Starlink and National Science Foundation sign deal coordinating spectrum use

SpaceX and the National Science Foundation (NSF) today signed an agreement coordinating the use of radio spectrum so that Starlink satellites will not interfere with radio astronomy.

The National Science Foundation (NSF) and SpaceX have finalized a radio spectrum coordination agreement to limit interference from the company’s Starlink satellites to radio astronomy assets operating between 10.6 and 10.7 GHz. The agreement, detailed in a statement released by NSF today, ensures that Starlink satellite network plans will meet international radio astronomy protection standards, and protect NSF-funded radio astronomy facilities, including the National Radio Astronomy Observatory (NRAO) and the Green Bank Observatory (GBO).

This deal was part of a larger negotiation with the entire astronomy community to limit the problems caused to astronomy by the 3,000-plus Starlink satellites presently in orbit. These other actions include

…continuing to work to reduce the optical brightness of their satellites to 7th visual magnitude or fainter by physical design changes, attitude maneuvering, or other ideas to be developed; maintaining orbital elevations at ~700 km or lower; and providing orbital information publicly that astronomers can use for scheduling observations around satellite locations.

This agreement demonstrates again that SpaceX has tried hard to be a good citizen in this matter. It also illustrates once again that ground-based astronomical observations is becoming increasingly impractical. Astronomers have to go to space, and if Starship flies as SpaceX desires, the company will provide them a way to do it.

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January 10, 2023 Quick space links

Courtesy of BtB’s stringer Jay, who probably has more energy than me at this time.

 

 

 

  • Virgin Orbit’s finances are really bad
  • The article essentially outlines the loss of revenue because the company could not launch in 2022, waiting for the UK bureaucrats to say yes. To stay afloat it borrowed lots of money, with the hope that revenues would begin pouring in with launches in 2023. That is now unlikely, at least for several months.

 

 

  • China’s CAS-Space shows off models of its future rockets
  • CAS-Space is a pseudo-company, supposedly private but really owned by the Chinese Academy of Sciences. As Jay wrote, “Looks like they copied both SpaceX and Blue Origin.” I found the similarity to be shameless, especially with its manned capsule.

 

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China’s Mars orbiter and rover in trouble

Yesterday we reported a tweet from Scott Tilley that suggested engineers were having trouble establishing a communications link with China’s Mars orbiter Tienwen-1.

Today it appears that communications with China’s rover Zhurong have also not resumed following its winter hibernation from May until December.

The Post independently confirmed with two sources on Thursday that the rover should have resumed running by now, but no contact has been established.

Though Zhurong’s solar panels can be tilted to kick dust from them, during hibernation this is apparently not possible. Because the winter dust season this year was especially bad (killing InSight for example), it is possible that Zhurong experienced the same fate.

Zhurong had a 90 day mission, and instead lasted a year. Moreover, tt was never expected to survive a Martian winter. The achievement thus remains grand.

As for the Tienwen-1 orbiter, it would be a much bigger failure if communications cannot be re-established. China without question expected this orbiter to operate for years, even functioning as a communications link for later landers/rovers. Its loss will force a revision of later plans.

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SpaceX successfully launches 40 OneWeb satellites

Using its Falcon 9 rocket, SpaceX tonight successfully placed 40 OneWeb satellites into orbit from Cape Canaveral, Florida.

This was only the second launch of this first stage, which landed successfully at Cape Canaveral. The rocket has now deployed all 40 satellites successfully, putting more than 80% of OneWeb’s constellation in orbit.

SpaceX had also planned a Starlink launch from Vandenberg in California tonight, but an hour before launch it was delayed until tomorrow.

At the moment only SpaceX and China have launched any satellites in 2023, and are both tied at 2 launches each.

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Virgin Orbit launch a failure today from Cornwall, Great Britain

Five minutes after I posted the information below, Virgin Orbit’s announcer came on to announce that LauncherOne had suffered “an anomaly” and would not successfully place the satellites in orbit.

The failure must have occurred during a later stage after the rocket was released and was preparing for the second engine burn of its upper stage. They have ended the live stream without providing a further update, which is not surprising considering the data that needs to be analyzed.

Original post:
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Virgin Orbit today successfully completed the first orbital launch ever the United Kingdom, taking off from a runway in Cornwall, Great Britain, and then releasing its LaunchOne rocket from the bottom of a 747.

All in all 9 satellites were launched. This was Virgin Orbit’s fifth successful commercial launch, and hopefully will open a 2023 whereby the company will makeup for six months of bureaucratic red tape that essentially blocked about six launches last year. As of this writing the satellites have not yet deployed.

The 2023 launch race:

2 China
1 SpaceX

Two SpaceX launches coming later this evening.

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January 9, 2023 Quick space links

Courtesy of BtB’s stringer Jay.

  • An image and video as SpaceX restacks Superheavy #7 and Starship #24 for testing

 

 

 

 

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Defrosting Martian Dunes

Defrosting Martian dunes
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Cool image time! The photo to the right, cropped, reduced, and sharpened to post here, was a captioned image on January 6, 2023 from the science team of the high resolution camera on Mars Reconnaissance Orbiter (MRO). From the caption by Alfred McEwen of the Lunar & Planetary Laboratory in Arizona:

In the late winter when first illuminated, the carbon dioxide frost at high latitudes will begin to sublimate. Over sand dunes, the defrosting spots and mass wasting on steep slopes produce striking patterns. This scene is especially artistic given the shapes of the dunes as well as the defrosting patterns.

» Read more

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Webb finds “wide diversity of galaxies in the early universe”

Webb galaxies in the early universe
Click for full image.

New data from the Webb Space Telescope and presented this week at an astronomy conference has found that galaxies in the early universe exhibit much of the same range of shapes and morphologies seen in the recent universe, a result that was not expected.

The image to the right comes from the press release. You can read the research paper here [pdf].

The study examined 850 galaxies at redshifts of z three through nine, or as they were roughly 11-13 billion years ago. Associate Professor Jeyhan Kartaltepe from Rochester Institute of Technology’s School of Physics and Astronomy said that JWST’s ability to see faint high redshift galaxies in sharper detail than Hubble allowed the team of researchers to resolve more features and see a wide mix of galaxies, including many with mature features such as disks and spheroidal components.

β€œThere have been previous studies emphasizing that we see a lot of galaxies with disks at high redshift, which is true, but in this study we also see a lot of galaxies with other structures, such as spheroids and irregular shapes, as we do at lower redshifts,” said Kartaltepe, lead author on the paper and CEERS co-investigator. β€œThis means that even at these high redshifts, galaxies were already fairly evolved and had a wide range of structures.”

The results of the study, which have been posted to ArXiv and accepted for publication in The Astrophysical Journal, demonstrate JWST’s advances in depth, resolution, and wavelength coverage compared to Hubble. Out of the 850 galaxies used in the study that were previously identified by Hubble, 488 were reclassified with different morphologies after being shown in more detail with JWST. Kartaltepe said scientists are just beginning to reap the benefits of JWST’s impressive capabilities and are excited by what forthcoming data will reveal.

β€œThis tells us that we don’t yet know when the earliest galaxy structures formed,” said Kartaltepe. β€œWe’re not yet seeing the very first galaxies with disks. We’ll have to examine a lot more galaxies at even higher redshifts to really quantify at what point in time features like disks were able to form.”

In other words, it appears galaxies of all shapes, as we see them today, already existed 11-13 billion years ago, shortly after the universe was born. This defies most theories about the formation of the universe, which predict that these early galaxies would be different than today’s.

The data however at this point is sparse. Webb has only begun this work, and as Kartaltepe notes, they need to look a lot more galaxies.

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Steady decline for decades in the publication of “disruptive science”

The steady decline in the publication of disruptive science

Though their definition of what makes a science paper disruptive is open to debate, a review of millions of peer-reviewed papers published since the end of World War II has shown a steady decline in such papers, as if scientists are increasingly unwilling or unable to think outside the box.

The graph to the right comes from this research.

The authors reasoned that if a study was highly disruptive, subsequent research would be less likely to cite the study’s references, and instead cite the study itself. Using the citation data from 45 million manuscripts and 3.9 million patents, the researchers calculated a measure of disruptiveness, called the β€˜CD index’, in which values ranged from –1 for the least disruptive work to 1 for the most disruptive.

The average CD index declined by more than 90% between 1945 and 2010 for research manuscripts, and by more than 78% from 1980 to 2010 for patents. Disruptiveness declined in all of the analysed research fields and patent types, even when factoring in potential differences in factors such as citation practices.

The authors also analysed the most common verbs used in manuscripts and found that whereas research in the 1950s was more likely to use words evoking creation or discovery such as β€˜produce’ or β€˜determine’, that done in the 2010s was more likely to refer to incremental progress, using terms such as β€˜improve’ or β€˜enhance’.

The article that I link to above is from Nature, so of course it can’t see the elephant in the room, citing as a possible explanation “changes in the scientific enterprise” where most scientists today work as teams rather than alone.

I say, when you increasingly have big government money involved in research, following World War II, it becomes more and more difficult to buck the popular trends. Tie that to the growing blacklist culture that now destroys the career of any scientist who dares to say something even slightly different, and no one should be surprised originality is declining in scientific research. The culture will no longer tolerate it. You will tow the line, or you will be gone. Scientists are thus towing the line.

To my readers: I had intended to include this paper as part of a larger essay about the general blacklist culture that now dominates American society, but my continuing health issues make it difficult to sit at my desk for long periods. I hope to have things under control in the next few days, but until then my posting is going to continue to be limited.

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Two nearby galactic neighbors

Two nearby galactic neighbors
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Cool image time! The photo to the right, cropped, reduced, and sharpened to post here, was taken by the Hubble Space Telescope of two nearby galaxy neighbors to the Milky way.

This image from the NASA/ESA Hubble Space Telescope features the galaxy LEDA 48062 in the constellation Perseus. LEDA 48062 is the faint, sparse, amorphous galaxy on the right side of this image, and it is accompanied by a more sharply defined neighbour on the left, the large, disc-like lenticular galaxy UGC 8603. A smattering of more distant galaxies also litter the background, and a handful of foreground stars are also visible throughout the image.

LEDA 48062 is estimated to be approximately 30 million light years away. This image was part of a recent Hubble campaign to study every known galaxy within 33 million light years.

Assuming that UGC 8603 is about the same approximate distance, the utter dissimilarity between these two galaxies is quite mystifying. It is also possible that UGC 8603 is larger and much farther away.

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