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Showing posts with label Astronomy. Show all posts
Showing posts with label Astronomy. Show all posts

Friday, July 21, 2023

An Asteroid loaded with $10 quintillion worth of Metals edges closer to US reach

Previously mentioned, here a report excerpt.   

An Asteroid loaded with $10 quintillion worth of Metals edges closer to US reach

Filip De Mott Jul 20, 2023, 4:31 PM EDT in  BusinessInsider

NASA cleared key hurdles that allow it to launch a spacecraft to the asteroid in October.

The asteroid is thought to be made up of gold, iron and nickel, with its value estimated at $10 quintillion.

The spacecraft will launch on a SpaceX rocket, and head to the Main Asteroid Belt between Mars and Jupiter.

>  Get the inside scoop on today’s biggest stories in business, from Wall Street to Silicon Valley — delivered daily.   ... 

Monday, January 23, 2023

A Photo Bot Feeds Data from JWST Space Telescope

 Instructive,   A means to to feed data from multiple sources?  50 GB a day!  What can we learn form this?

Telescope broke the universe

Scientists were in awe of the flood of data that arrived when the new space observatory booted up.

A clutch of massive stars takes center stage in this mosaic image of the Tarantula Nebula, captured with JWST's Near Infrared Camera. They are surrounded by, and will help sculpt, clouds of gas and dust—the raw material for yet more stars. ... '

NASA, ESA, CSA, STSCI, WEBB ERO PRODUCTION TEAM   by Jonathan O'Callaghan archive page,  January 21, 2023

https://twitter.com/jwstphotobot

JWST Photo Bot   @JWSTPhotoBot   Automated by @adamlastowka

I post public data from JWST's MIRI and NIRCAM instruments!

INFO: https://github.com/Rachmanin0xFF/jwst-twitter-bot

Earth-Sun L2 Halo Orbit Joined July 2022

2,853 Followers  ... ' 

Tuesday, January 10, 2023

Kepler Planet Doomed?

Space musings based on new devices and findings.

Is The first planet found by the Kepler space telescope is doomed?

Every year, the planet inches closer to its star

Like the giant planet illustrated here, the planet Kepler 1658b is on a slow death spiral into its sun.

By Lisa Grossman    December 18 2022 in Science News

The first planet ever spotted by the Kepler space telescope is falling into its star.

Kepler launched in 2009 on a mission to find exoplanets by watching them cross in front of their stars. The first potential planet the telescope spotted was initially dismissed as a false alarm, but in 2019 astronomer Ashley Chontos and colleagues proved it was real (SN: 3/5/19). The planet was officially named Kepler 1658b.

Now, Chontos and others have determined Kepler 1658b’s fate. “It is tragically spiraling into its host star,” says Chontos, now at Princeton University. The planet has roughly 2.5 million years left before it faces a fiery death. “It will ultimately end up being engulfed. Death by star.” ... ' 

Monday, January 02, 2023

Supercomputer Simulation Animates Evolution of the Universe

Considering all of it and animations are useful too.  

Supercomputer Simulation  of the Universe

ScienceNews

James R. Riordon. December 2, 2022

An international team of researchers has engineered the most accurate supercomputer animation of the cosmos' early evolution to date. The simulation represents the third version of the Cosmic Dawn Project (CoDaIII), which the University of Texas at Austin's Paul Shapiro described as the first model to fully encompass the interaction between radiation and the flow of matter in the universe. CoDaIII spans the period from about 10 million years after the Big Bang through the next several billion years, as matter composing the modern cosmos diffused. Shapiro said the animation depicts how the early universe's structure is "imprinted on the galaxies today, which remember their youth, or their birth, or their ancestors from the epoch of reionization."

Wednesday, December 07, 2022

Free-Space Optics System Could Boost Space Comms

Free Space Optics

Free-Space Optics System Could Boost Space Comms

IEEE Spectrum. John Boyd.December 1, 2022

Researchers at Australia's International Center for Radio Astronomy Research (ICRAR) established a laser-guided free-space optical (FSO) link with the potential to enhance communications for space missions. The researchers maintained the FSO link despite stormy atmosphere between an optical ground terminal and a retroreflector on an airborne drone. ICRAR's Shane Walsh explained the framework supports "an uninterrupted 100-gigabits-per-second optical-data link. We do this by tracking the drone at angular rates up to 1.5 degrees a second—the equivalent of tracking a satellite in low Earth orbit [LEO]." Walsh said this clears a path for realizing terabit-per-second communications between LEO satellites and ground stations. ... ' 


Friday, November 04, 2022

More Challenges in Detecting Dangerous Hidden Asteroids

 Been long watching some of the 'Planetary Defense' work being done by NASA, most recently the DART flight and impact.  Its been discovered that there are some asteroids hidden behind the glare of our sun.    Can we effectively change asteroid orbits effectively?   The challenge continues

Planet killer’ asteroids nearly a mile long detected after being hidden by the sun's brightness

Scott Gleeson, Jordan Mendoza, USA TODAY

Astronomers have detected three asteroids in close proximity to Earth, two of which pose a potential threat as "planet killers" because of their larger and hazardous size, but don't worry, says a NASA expert, they aren't expected to hurt us. 

According to findings published in the peer-reviewed Astronomical Journal on Monday, the three asteroids – which belong to a group found within the orbits of Earth and Venus – were previously undetectable via telescope due to the glare and brightness of the sun.

However, an international space team of astronomers waited until twilight at an observatory in Chile to examine the asteroids using a dark energy camera from a Víctor M. Blanco 4-meter Telescope, according to the National Science Foundation's NOIRLab.

The biggest asteroid is the most hazardous object to prompt a significant risk to Earth in the last eight years, researchers say. One of the asteroids, named 2022 AP7, is a little less than one mile wide but has an orbit that could reach Earth's path in the distant future. A timetable is uncertain, though, according to findings in the journal. 

Skyscraper-sized asteroid to pass Earth:Here's how close it will actually get

NASA:DART mission successfully smashed an asteroid aside in deep space

The other two asteroids, 2021 LJ4 and 2021 PH27, pose less of a risk to colliding with Earth, researchers say.

An artist illustration captures an asteroid orbiting closer to the sun than Earth's orbit.

"Our twilight survey is scouring the area within the orbits of Earth and Venus for asteroids,” lead study author Scott S. Sheppard, an astronomer at the Earth & Planets Laboratory of the Carnegie Institution for Science in Washington, D.C., said in a statement. "So far we have found two large near-Earth asteroids that are about 1 kilometer across, a size that we call planet killers."  ... ' 

Wednesday, October 19, 2022

Aricebo Will not be Rebuilt

 I had an involvement with data from Arecibo, sad to see this go.  Are we getting data from China?   Much more detail at the li

Space scientists lament loss, say it won't be the same without actual working instruments

By Thomas Claburn in TheRegister

Mon 17 Oct 2022 // 20:10 UTC

The US National Science Foundation (NSF) has decided not to rebuild Puerto Rico's Arecibo Observatory, shut down in August 2020 due to damage accrued three years earlier.

In its place, the NSF has solicited bids to create "a new multidisciplinary, world-class educational center" for science, technology, engineering, and math (STEM).

The Arecibo Center for STEM Education and Research (ACSER), as center is being called, "would serve as a hub for STEM discovery and exploration by building upon existing programs and opportunities currently in place at the Arecibo Observatory site, while also creating and implementing new STEM education, research, and outreach programs and initiatives," the solicitation says.

The Arecibo Observatory was completed in 1963. At 305 metres (1,000 feet), its main instrument, the Arecibo radio telescope, was the largest single-aperture telescope until 2016 when it was surpassed by China's Five-hundred-meter Aperture Spherical Telescope (FAST, or Tianyan). The observatory has played a role in numerous significant scientific discoveries, including the finding of the first binary pulsar.  .... '

Monday, October 17, 2022

Sky Clutter: If You Could See Every Satellite in Low Earth Orbit!

(UPDATED)

A thoughtful,  interactive piece, which clearly demonstrates the increasing clutter in low earth orbit.   

If You Could See Every Satellite, What Would The Sky Look Like? 360/VR

By Scott Manley  1.51M subscribers

There are over ten thousand satellites in orbit, but only the largest ones in low earth orbit are visible in the hours just after sunset. What would the sky look like if you could see everything in space? I took satellite data and rendered a view of the night sky for an 'average' viewer in North America.

All the code and files needed to make this are shared with my supporters at Patreon      https://www.patreon.com/posts/31591742

Background Music is Spatial Harvest by Kevin Macleod.

Satellite data from 

https://www.space-track.org/

https://celestrak.com

https://prismnet.com/~mmccants ... ' 

Sunday, September 18, 2022

Simulation Aids Search for the Origin of Cosmic Rays

Testing theoretical models,  often done with prospective simulation.

Simulation Aids Search for the Origin of Cosmic Rays

By Ruhr-Universität Bochum (Germany)

September 15, 2022

An international research team created a computer program to simulate the propagation of cosmic rays, to help in the search for their sources.

Julien Dörner at Germany's Ruhr-Universität Bochum said, "Our program CRPropa enables us to trace the trajectories of particles from their formation to their arrival on Earth—and this for all energies that we can observe from Earth. We can also fully account for the interaction of the particles with matter and photon fields in the universe."

CRPropa also can model the signatures of neutrinos and gamma rays generated in cosmic ray interactions.

Karl-Heinz Kampert at Germany's University of Wuppertal said, "We can develop a theoretical model that describes the transition from cosmic rays from our own galaxy to a fraction coming from distant galaxies and compare it with observations."

From Ruhr-Universität Bochum (Germany)

View Full Article    

Wednesday, August 10, 2022

Found and Displayed from Space


Found in Space:    This image of the Cartwheel and its companion galaxies is a composite from the James Webb Space Telescope's Near-Infrared Camera (NIRCam) and Mid-Infrared Instrument (MIRI), which reveals details that are difficult to see in the individual images alone.    Credit: NASA, ESA, CSA, STScI  

By Keith Kirkpatrick,  Commissioned by CACM Staff, August 9, 2022   ... see AI tech links below.

The July 12 release of the images from NASA's James Webb Space Telescope (JWST) has captivated and excited everyone from schoolchildren to space buffs, thanks to the vivid colors and crisp captures of the distant reaches of space. The images from the telescope, which is the largest, most complex and powerful space telescope ever constructed, brought into focus thousands of galaxies, both known and unknown, as well as so-called "cosmic cliffs" of dust and gas, and even a dying star.

The telescope detects near-infrared and mid-infrared wavelengths, the light beyond the red end of the visible spectrum, which allows otherwise hidden regions of space to be captured. Infrared light can uncover and reveal new details in images, based on the object. For example, bodies of matter such as young planets that are cool and do not emit much energy or visible brightness, still radiate in the infrared. Similarly, visible light's short wavelengths often can be obscured by space dust or a dense nebula (a group of interstellar clouds), keeping their images from being captured by telescopes that only detect visible light, such as the Hubble telescope. Infrared light, with its longer wavelengths, can penetrate through dust more easily, and infrared-based telescopes can detect lower-energy objects that often form within nebulae, such as brown dwarf stars and newly forming stars. Thus, the JWST can reveal objects that previously were hidden from view.

Although the images themselves are astounding, the real value for astronomers and scientists will come from the deep analysis of the objects contained in the images. While artificial intelligence (AI) can be used to determine which data are important to be sent for processing, thereby reducing the overall amount of information that needs to be analyzed and stored, the use of deep learning provides massive benefits in the processing and analysis of the data.

Deep learning is being used to identify and classify objects from the images and can provide a significant advantage over manual classification techniques. Using a supervised approach, a training set of previously identified objects and their specific attributes and features are fed into a system to "teach" the models to yield the desired outputs. For space object classification, the training dataset includes inputs and correct outputs to identify objects such as stars, galaxies, space dust and clouds, black holes, and other elements of interest, which allow the model to learn over time. The algorithm measures its accuracy through the loss function, adjusting until the error has been sufficiently minimized to ensure confidence.

Once the model has been developed, the algorithm is ready to process, analyze, and classify new objects found by telescopes such as the JWST, saving significant amounts of time and effort over manual analysis.

"Without AI tools to perform classification, objects in astronomical images have to be inspected by professional or amateur astronomers, with a classification determined by weighting the opinions of people," says Brant Robertson, a professor of astronomy in the astrophysics department at the University of California Santa Cruz (UCSC), who is involved in the process of analyzing recently captured JWST images. "The speed of visual inspection by humans is limited by how quickly the information can be provided and by how many people can provide useful inspections of many objects. [However,] the speed of AI classification is only limited by the amount of computing available, which is no longer a considerable limitation, and the careful preparation of the datasets."

Morpheus, a deep learning framework based on TensorFlow (an end-to-end open-source platform for machine learning), will be used to perform image classification on the data captured by the JWST. Originally developed in 2019, Morpheus is a model for generating pixel-level structural classifications of astronomical data sources. It leverages deep learning to perform source detection, source segmentation, and morphological classification on a pixel-by-pixel basis, using a semantic segmentation algorithm adopted from the field of computer vision. By using this structural data about the flux of real astronomical sources during object detection, Morpheus has demonstrated resiliency to false-positive identifications of sources, according to an evaluation using data captured by the Hubble Space Telescope.

"Deep learning models like Morpheus use the full pixel information in an image to perform classification, so all the visual features of galaxies or stars are used by the model," Robertson says. "Galaxies come in three broad categories:  elliptical galaxies are ellipsoidal and relatively smooth; disk galaxies are usually flattened and have spiral structure or dark dust lanes, and irregular galaxies tend to be clumpy and amorphous. Since each of these objects have visually distinct morphologies, the model can tell them apart." Robertson says his team can "process the largest JWST surveys with Morpheus in just a few hours with the computational resources we have here at UCSC."

In a podcast conducted a few months prior to the release of the JWST images, Robertson said the telescope may be able to look for features in the atmospheres of planets that could indicate a presence of life. While Morpheus has not yet been trained to analyze this type of date, Robertson said, "We'd very much welcome collaboration from scientists interested in AI methods for evaluating JWST spectroscopic data of atmospheres."

Indeed, the study of space is a worldwide, collaborative effort, and other researchers also have developed AI platforms that can also be used to identify, evaluate, and classify objects found by space telescopes. RobERt (Robotic Exoplanet Recognition) is a deep neural network created by Ingo Waldmann and his team at the U.K.'s University College London, which used more than 85,000 simulated light curves from five classes of exoplanets to train RobERt to recognize the presence of specific molecules and gases in exoplanets' atmospheres. The platform was used to model exoplanet data from the Hubble Space Telescope, and after training, RobERt was able to identify molecules such as water, carbon dioxide, ammonia, and titanium oxide in light curves from real exoplanets with 99.7% accuracy. 

Keith Kirkpatrick is principal of 4K Research & Consulting, LLC, based in New York, NY, USA.

Tuesday, July 26, 2022

JW Space Telescope Reshaping Astronomy

Good,  non-tech piece, intro below

Two Weeks In, the Webb Space Telescope Is Reshaping Astronomy  in QuantaMag

In the days after the mega-telescope started delivering data, astronomers reported exciting new discoveries about galaxies, stars, exoplanets and even Jupiter. ... 

Coordinating over Slack, Pascale, an astrophysicist at the University of California, Berkeley, and 14 collaborators divvied up tasks. The image showed thousands of galaxies in a pinprick-size portion of the sky, some magnified as their light bent around a central cluster of galaxies. The team set to work scrutinizing the image, hoping to publish the very first JWST science paper. “We worked nonstop,” said Pascale. “It was like an escape room.”

Three days later, just minutes before the daily deadline on arxiv.org, the server where scientists can upload early versions of papers, the team submitted their research. They missed out on being first by 13 seconds, “which was pretty funny,” said Pascale.

Abstractions navigates promising ideas in science and mathematics. Journey with us and join the conversation....

The victors, Guillaume Mahler at Durham University in the United Kingdom and colleagues, analyzed that same first JWST image. “There was just a sheer pleasure of being able to take this amazing data and publish it,” Mahler said. “If we can do it fast, why should we wait?”

The “healthy competition,” as Mahler calls it, highlights the enormous volume of science that is already coming from JWST, days after scientists started receiving data from the long-awaited, infrared-sensing mega-telescope.  ...  

Thursday, July 21, 2022

Webb Space Telescope Has Profound Data Challenges

Useful example to consider.

The Webb Space Telescope's Profound Data Challenges

By IEEE Spectrum, July 15, 2022

The Lagrange points are equilibrium locations where competing gravitational tugs on an object net out to zero. The James Webb Space Telescope is one of two other craft currently occupying L2.  The James Webb Space Telescope (JWST)'s data-collecting operations present a number of challenges, including dependence on a reliable communications subsystem.

The spacecraft is sending data up to 57 gigabytes (GB) of data per day back to Earth on a 25.9-gigahertz channel at up to 28 megabits per second.  Data recorded by the JWST's scientific instruments is stored in the spacecraft's 68-GB solid-state drive, which can collect data for about 24 hours before reaching its limit.

Only after the spacecraft receives confirmation of a data file's receipt will it delete its onboard copy of the data to clear space.   The telescope will stay connected to Earth through the Deep Space Network, sharing limited antenna time with other deep-space missions.

From IEEE Spectrum

View Full Article      

Thursday, June 16, 2022

FAST Chinese Radio Telescope Detects Alien Signals

Noted comparision to US Arecebo Radio telescope, recently damaged.     Good complex data gathering example.  

Chinese Scientists Might Have Detected Signals From Alien Civilizations (Updated)  In ExtremeTech

By Ryan Whitwam on June 15, 2022 

The search for extraterrestrial intelligence has been ongoing for decades, but there’s still no definitive proof that someone else is out there. That doesn’t mean we are bereft of evidence, though. Astronomers occasionally spot something unusual but inconclusive, which is how we’d classify the latest report from China’s Extraterrestrial Civilization Research Group at Beijing Normal University. The team has detected an anomalous transmission using the enormous FAST radio observatory that could be evidence of alien intelligence. 

What little information we have comes from the state-controlled Science and Technology Daily, which reported on the discovery this week. The site reports that researchers using the Five-hundred-meter Aperture Spherical radio Telescope (FAST) identified several narrow-band electromagnetic signals consistent with what we would expect to see from an artificial source. 

If there is someone beaming signals into the great beyond out there, FAST would be an ideal way to detect that. The observatory began operation in 2016, becoming the largest radio telescope in the world. It’s physically larger than the now-defunct Arecibo dish, and it has a larger sky observation area along with 19 beams that can watch different parts of the sky simultaneously.  .... ' 

Saturday, June 11, 2022

Liquid Mirror Telescopes

Very interesting application, but not new.  A means of data acquisition to match model needs when there
are strong limits of expense or capability.

Inexpensive technology could be used to build giant telescope on the Moon   13 june 2022  By Daniel Clery in Science

A unique telescope that focuses light with a slowly spinning bowl of liquid mercury instead of a solid mirror has opened its eye to the skies above India. Such telescopes have been built before, but the 4-meter-wide International Liquid Mirror Telescope (ILMT) is the first large one to be purpose-built for astronomy, at the kind of high-altitude site observers prize—the 2450-meter Devasthal Observatory in the Himalayas.

Although astronomers must satisfy themselves with only looking straight up, the $2 million instrument, built by a consortium from Belgium, Canada, and India, is much cheaper than telescopes with glass mirrors. A stone’s throw from ILMT is the 3.6-meter, steerable Devasthal Optical Telescope (DOT)—built by the same Belgian company at the same time—but for $18 million. “Simple things are often the best,” says Project Director Jean Surdej of the University of Liège. Some astronomers say liquid mirrors are the perfect technology for a giant telescope on the Moon that could see back to the time of the universe’s very first stars. ..... '

Monday, June 06, 2022

Turning Towards the Super-earths

 What will we see?

Astronomers Prepare to Turn Webb Telescope Toward Nearby Super-Earths   By Ryan Whitwam on May 31, 2022 at 6:15 am

The James Webb Space Telescope (JWST) has been in space for about six months, which is just a fraction of the time NASA spent designing and building it. All that effort is about to pay off, though. Webb will begin science operations this summer, and some of its first targets will be a pair of nearby exoplanets. These planets, 55 Cancri e and LHS 3844 b are in a category of larger rocky exoplanets known as super-Earths. Webb could provide scientists the best view yet of terrestrial planets outside of our solar system. 

NASA designed the JWST as a follow-up to the hugely successful Hubble Space Telescope. While Hubble needed a service mission after launch to work correctly, Webb appears to be a prime example of optical perfection. NASA reports the telescope’s instruments are “diffraction-limited,” which means it’s as good as it can possibly be given the size of the mirror. 

So far, we’ve only seen a few test images from Webb, but they already show how much more powerful it is than past instruments. That could be a boon to the study of exoplanets, which are too dim to be observed in detail. However, Webb has a much larger mirror than even Hubble, and it can peer deeply into the infrared part of the light spectrum. That could allow it to collect data from 55 Cancri e and LHS 3844 b like never before.  .... ' 

Wednesday, June 01, 2022

Tool Helps Spot Killer Asteroids

 Quite interesting,  ultimately this is a big issue, a very big one.   The improvements on detection have been considerable in recent years.  Stopping is a different thing.

Tool Helps Spot Killer Asteroids

The New York Times

Kenneth Chang, May 31, 2022

The nonprofit B612 Foundation and University of Washington researchers discovered 104 previously unknown asteroids by applying cutting-edge computations to 412,000 digital images archived at the U.S. National Science Foundation's National Optical-Infrared Astronomy Research Laboratory. The researchers developed the Tracklet-less Heliocentric Orbit Recovery (THOR) algorithm, which can analyze astronomical imagery not only to identify points of light that might be asteroids, but also to determine which points of light in images captured on different nights are the same asteroid. THOR builds a test orbit corresponding to the observed point of light, assumes a specific distance and velocity, then calculates the asteroid's position on subsequent and previous nights. The work adds to planetary defense measures undertaken by the National Aeronautics and Space Administration and other organizations worldwide. ... ' 

Full Article 

Tuesday, May 31, 2022

Looking Further Than Ever

 This could be a very big,  very revealing thing..  As always, I am following.

Astronomers Prepare to Turn Webb Telescope Toward Nearby Super-Earths  By Ryan Whitwam on May 31, 2022 at 6:15 am in ExtremeTech

The James Webb Space Telescope (JWST) has been in space for about six months, which is just a fraction of the time NASA spent designing and building it. All that effort is about to pay off, though. Webb will begin science operations this summer, and some of its first targets will be a pair of nearby exoplanets. These planets, 55 Cancri e and LHS 3844 b are in a category of larger rocky exoplanets known as super-Earths. Webb could provide scientists the best view yet of terrestrial planets outside of our solar system. ...

Sunday, May 15, 2022

Pulsing Networks in Simulations

Long time ago I needed to set up a simulation that included a pulsing network to support a solar astro model.    Found this interesting solution today.  Just for my own reference and possible the needs of others.  I like Wolframs broad application examples.

Building a Pulse-Forming Network with the Wolfram Language  In Wolfram Blog

May 6, 2022, Robert Mendelsohn, Product Manager, Strategic Initiatives

This has multiple applications in many physics- and electrical engineering–related systems, including radar, kicker magnets for accelerators and really any time a pulsed uniform voltage or current is needed. In my case, I needed this capability for a metal vapor vacuum arc plasma source that I’m using to study the properties of metallic plasmas in strong magnetic fields.

In this blog post, I’ll walk you through some pulse-forming network theory along with how I used the Wolfram Language to quickly and easily design a cost-effective pulse-forming network by using circuit theory, the interactive Manipulate function and data from an electronics vendor to explore practical design options. This will also show off the Quantity function in the Wolfram Language, which has proven helpful and easy to use.n.... '  (detailed model) 

Monday, April 18, 2022

James Webb Will Stare at Jupiter for Knowledge Expansion

Not normally in this space, but a link to my astrophysics interests.   An example of how you can expand masses of sensor data from historical probes, with new technology.  Ways to expand patterns of data in new ways.  Ways to do this in other domains?    Will try to make the case in coming year.  Good to see this, will be following.

The James Webb Space Telescope Is Going to Stare Straight Into Jupiter  In Futureism.com

There's a lot we know about Jupiter. But even more we don't.

/ Hard Science/ James Webb Space Telescope/ Jupiter/ JWST  NASA   .... 

After launching late last year, NASA’s revolutionary James Webb Space Telescope is finally getting ready to fixate its numerous golden mirrors on distant targets.

Intriguingly, though, one of its 13 early targets isn’t so distant at all — at least in the grand scheme of things. It’ll be looking at Jupiter, the iconic gas giant in our own star system. Of course, we already know quite a bit about the planet already— so why investigate it using the JWST if it can have a closer look at far more distant objects?

“We’ve been there with several spacecraft and have observed the planet with Hubble and many ground-based telescopes at wavelengths across the electromagnetic spectrum (from the UV to meters wavelengths),” Berkeley astronomer Imke de Pater, leader of the Jupiter observation team, told Digital Trends, “so we’ve learned a tremendous amount about Jupiter itself, its atmosphere, interior, and about its moons and rings.” ...

Thursday, March 24, 2022

Sonification of Data, Down Here and High Above

 We experimented with using a data sonification which represented sales results and breakthough types of cases.   Below is not the same thing, but I always fondly think of the use of  sound, properly designed, can give incentive and even insight.   Can you think of its use?

NASA Celebrates 5,000 Exoplanet Milestone with ‘Data Sonification’

Demonstration:  https://youtu.be/yv4DbU1CWAY 

By Ryan Whitwam on March 23, 2022 at 9:26 am

A few short decades ago, we could only speculate about the possibility of planets beyond our own solar system, but then we started finding them. Little by little, the universe has become a bustling place with more exoplanets being discovered every year. How many? NASA JPL says as of March 21st, there are just over 5,000 of them. To celebrate this milestone, the agency has produced a neat “data sonification” of the road to 5,000 exoplanets. Sonification is the use of non-speech audio to represent information. 

The first exoplanets were discovered in the early 90s, but they’re not the kind of planets you’re probably expecting. They’re more like charred husks tethered to a millisecond pulsar, a type of dead star that blasts out radiation like a rapidly spinning lighthouse. Throughout the 90s and early 2000s, telescopes spotted a few hundred exoplanets, but it wasn’t until the launch of the Kepler Space Telescope that things got cooking. 

NASA’s sonication begins in 1991 prior to the first exoplanet confirmations. Each time a new planet enters the catalog, there’s a chime and the counters at the top advance. It shows not only the approximate location of the exoplanet in the sky (using the central band of the Milky Way as a guide) but the types of detection. Early on, the detections are mostly from radial velocity, a technique that scans for minute wobbles in a star caused by the mass of orbiting planets. After Kepler, transits take over in a big way.   .... '