Protoplanetary disc. Credit: ESO/L. Calada
Astronomers have managed to link the properties of the inner planets of our solar system with our cosmic history: with the emergence of ring structures in the swirling disk of gas and dust in which these planets were formed. The rings are associated with basic physical properties such as the transition from an outer region where ice can form where water can only exist as water vapor. The astronomers made use of a spread of simulation to explore different possibilities of inner planet evolution. Our solar systems inner regions are a rare, but possible outcome of that evolution. The results have been published in Nature Astronomy.
The broad-stroke picture of planet formation around stars has been unchanged for decades. But many of the specifics are still unexplained and the search for explanations an important part of current research. Now, a group of astronomers led by Rice Universitys Andre Izidoro, which includes Bertram Bitsch from the Max Planck Institute for Astronomy, has found an explanation for why the inner planets in our solar system have the properties we observe.
This image, taken with the ALMA Observatory in 2014, was the first to reveal a ring-like structure in a protoplanetary disk in this case, the disk around the young star HL Tauri. The visible disk has a radius of a bit over 100 astronomical units, that is, over 100 times the average Earth-Sun distance. For comparison: In our solar system, the maximal distance of Pluto from the Sun amounts to about 50 astronomical units. The research described here shows the key role ring-like structures like this are likely to have played in the genesis of our Solar System. Credit: ALMA (ESO/NAOJ/NRAO), NSF
The broad-stroke picture in question is as follows: Around a young star, a protoplanetary disk of gas and dust forms, and inside that disk grow ever-larger small bodies, eventually reaching diameters of thousands of kilometers, that is: becoming planets. But in recent years, thanks to modern observational methods, the modern picture of planet formation has been refined and changed in very specific directions.
The most striking change was triggered by a literal picture: The first image taken by the ALMA observation after its completion in 2014. The image showed the protoplanetary disk around the young star HL Tauri in unprecedented detail, and the most stunning details amounted to a nested structure of clearly visible rings and gaps in that disk.
As the researchers involved in simulating protoplanetary disk structures took in these new observations, it became clear that such rings and gaps are commonly associated with pressure bumps,, where the local pressure is somewhat lower than in the surrounding regions. Those localized changes are typically associated with changes in disk composition, mostly in the size of dust grains.
In particular, there are pressure bumps associated with particularly important transitions in the disk that can be linked directly to fundamental physics. Very close to the star, at temperatures higher than 1400 Kelvin, silicate compounds (think sand grains) are gaseous it is simply too hot for them to exist in any other state. Of course, that means that planets cannot form in such a hot region. Below that temperature, silicate compounds sublimate, that is, any silicate gases directly transition to a solid state. This pressure bump defines an overall inner border for planet formation.
Farther out, at 170 Kelvin (100 degrees Celsius), there is a transition between water vapor on the one hand and water ice on the other hand, known as the water snowline. (The reason that temperature is so much lower than the standard 0 degrees Celsius where water freezes on Earth is the much lower pressure, compared to Earths atmosphere.) At even lower temperatures, 30 Kelvin (240 degrees Celsius), is the CO snowline; below that temperature, carbon monoxide forms a solid ice.
What does this mean for the formation of planetary systems? Numerous earlier simulations had already shown how such pressure bumps facilitate the formation of planetesimals the small objects, between 10 and 100 kilometers in diameter, that are believed to be the building blocks for planets. After all, the formation process starts much, much smaller, namely with dust grains. Those dust grains tend to collect in the low-pressure region of a pressure bump, as grains of a certain size drift inwards (that is, towards the star) until they are stopped by the higher pressure at the inner boundary of the bump.
As the grain concentration at the pressure bump increases, and in particular the ratio of solid material (which tends to aggregate) to gas (which tends to push grains apart) increases, it becomes easier for those grains to form pebbles, and for those pebbles to aggregate into larger objects. Pebbles are what astronomers call solid aggregates with sizes between a few millimeters and a few centimeters.
But what had still been an open question was the role of those sub-structures in the overall shape of planetary systems, like our own Solar system, with its characteristic distribution of rocky, terrestrial inner planets, and outer gaseous planets. This is the question that Andre Izidoro (Rice University), Bertram Bitsch of the Max Planck Institute for Astronomy, and their colleagues took on. In their search for answers, they combined several simulations covering different aspects and different phases of planet formation.
Specifically, the astronomers constructed a model of a gas disk, with three pressure bumps at the silicates-become-gaseous boundary and the water and CO snow lines. They then simulated the way that dust grains grow and fragment in the gas disk, the formation of planetesimals, the growth from planetesimals to planetary embryos (from 100 km in diameter to 2000 km) near the location of our Earth (1 astronomical unit distance from the Sun), the growth of planetary embryos to planets for the terrestrial planets, and the accumulation of planetesimals in a newly-formed asteroid belt.
In our own solar system, the asteroid belt between the orbits of Mars and Jupiter is home to hundreds of smaller bodies, which are believed to be remnants or collision fragments of planetesimals in that region that never grew to form planetary embryos, let alone planets.
An interesting question for simulations is this: If the initial setup were just a little bit different, would the end result still be somewhat similar? Understanding these kinds of variations is important for understanding which of the ingredients are the key to the outcome of the simulation. That is why Bitsch and his colleagues analyzed a number of different scenarios with varying properties for the composition and for the temperature profile of the disk. In some of the simulations, they only the silicate and water ice pressure bumps, in others all three.
The results suggest a direct link between the appearance of our solar system and the ring structure of its protoplanetary disk. Bertram Bitsch of the Max Planck Institute for Astronomy, who was involved both in planning this research program and in developing some of the methods that were used, says: For me, it was a complete surprise how well our models were able to capture the development of a planetary system like our own right down to the slightly different masses and chemical compositions of Venus, Earth, and Mars.
As expected, in those models, planetesimals in those simulations formed naturally near the pressure bumps, as a cosmic traffic jam for pebbles drifting inwards, which would then be stopped by the higher pressure at the inner boundary of the pressure bump.
For the inner parts of the simulated systems, the researchers identified the right conditions for the formation of something like our own solar system: If the region right outside the innermost (silicate) pressure bump contains around 2.5 Earth masses worth of planetesimals, these grow to form roughly Mars-sized bodies consistent with the inner planets within the solar system.
A more massive disk, or else a higher efficiency of forming planetesimals, would instead lead to the formation of Super-Earths, that is, considerably more massive rocky planets. Those Super-Earths would be in close orbit around the host star, right up against that innermost pressure bump boundary. The existence of that boundary can also explain why there is no planet closer to the Sun than Mercury the necessary material would simply have evaporated that close to the star.
The simulations even go so far as to explain the slightly different chemical compositions of Mars on the one hand, Earth and Venus on the other: In the models, Earth and Venus indeed collect most of the material that will form their bulk from regions closer to the Sun than the Earths current orbit (one astronomical unit). The Mars-analogues in the simulations, in contrast, were built mostly from material from regions a bit farther away from the Sun.
Beyond the orbit of Mars, the simulations yielded a region that started out as sparsely populated with or, in some cases, even completely empty of planetesimals the precursor of the present-day asteroid belt of our solar systems. However, some planetesimals from the zones inside of or directly beyond would later stray into the asteroid belt region and become trapped.
As those planetesimals collided, the resulting smaller pieces would form what we today observe as asteroids. The simulations are even able to explain the different asteroid populations: What astronomers call S-types asteroids, bodies that are made mostly of silica, would be the remnants of stray objects originating in the region around Mars, while C-type asteroids, which predominantly contain Carbon, would be the remnants of stray objects from the region directly outside the asteroid belt.
In that outer region, just outside the pressure bump that marks the inner limit for the presence of water ice, the simulations show the beginning of the formations of giant planets the planetesimals near that boundary typically have a total mass of between 40 and 100 times the mass of the Earth, consistent with estimates of the total mass of the cores of the giant planets in our solar system: Jupiter, Saturn, Uranus, and Neptune.
In that situation, the most massive planetesimals would quickly gather more mass. The present simulations did not follow up on the (already well-studied) later evolution of those giant planets, which involves an initially rather tight group, from which Uranus and Neptune later migrated outwards to their present positions.
Last but not least, the simulations can explain the final class of objects, and its properties: so-called Kuiper-belt objects, which formed outside the outermost pressure bump, which marks the inner boundary for the existence of carbon monoxide ice. It even can explain the slight differences in composition between known Kuiper-belt objects: again as the difference between planetesimals that formed originally outside the CO snowline pressure bump and stayed there, and planetesimals that strayed into the Kuiper belt from the adjacent inner region of the giant planets.
Overall, the spread of simulations led to two basic outcomes: Either a pressure bump at the water-ice snowline formed very early; in that case, the inner and outer regions of the planetary system went their separate ways rather early on within the first hundred thousand years. This led to the formation of low-mass terrestrial planets in the inner parts of the system, similar to what happened in our own solar system.
Alternatively, if the water-ice pressure bump forms later than that or is not as pronounced, more mass can drift into the inner region, leading instead to the formation of Super-Earths or mini-Neptunes in the inner planetary systems. Evidence from the observations of those exoplanetary systems astronomers have found so far shows that case is by far the more probable and our own Solar system a comparatively rare outcome of planet formation.
In this research, the focus of the astronomers was on the inner solar system and the terrestrial planets. Next, they want to run simulations that include details of the outer regions, with Jupiter, Saturn, Uranus, and Neptune. The eventual aim is to arrive at a complete explanation for the properties of ours and other solar systems.
For the inner solar system, at least, we now know that key properties of Earth and its nearest neighboring planet can be traced to some rather basic physics: the boundary between frozen water and water vapor and its associated pressure bump in the swirling disk of gas and dust that surrounded the young Sun.
Reference: Planetesimal rings as the cause of the Solar Systems planetary architecture by Andre Izidoro, Rajdeep Dasgupta, Sean N. Raymond, Rogerio Deienno, Bertram Bitsch and Andrea Isella, 30 December 2021, Nature Astronomy.DOI: 10.1038/s41550-021-01557-z
The MPIA researcher involved is Bertram Bitsch, an independent research group leader in the department Planet and Star Formation, in collaboration with Andre Izidoro, Rajdeep Dasgupta, Andrea Isella (all Rice University), Sean N. Raymond (Universit de Bordeaux) and Rogerio Deienno (Southwestern Research Institute).
Read the original post:
- US GAO - About GAO - 100 Years of GAO - Government Accountability Office [Last Updated On: January 9th, 2021] [Originally Added On: January 9th, 2021]
- Oklahoma football: Baker Mayfield making OU history in the NFL - Stormin' in Norman [Last Updated On: January 9th, 2021] [Originally Added On: January 9th, 2021]
- Here are the 5 biggest HRs in Padres history - MLB.com [Last Updated On: January 9th, 2021] [Originally Added On: January 9th, 2021]
- Corey Crawford retires as one of the best in Chicago Blackhawks history - Da Windy City [Last Updated On: January 9th, 2021] [Originally Added On: January 9th, 2021]
- Cardinal Koch: History of separation can be part of history of reconciliation - Vatican News [Last Updated On: January 9th, 2021] [Originally Added On: January 9th, 2021]
- The Local Take Talks Health, History and African Americans - WCLK [Last Updated On: January 9th, 2021] [Originally Added On: January 9th, 2021]
- In Depth: What history tell us about the US Capitol riots - RADIO.COM [Last Updated On: January 9th, 2021] [Originally Added On: January 9th, 2021]
- Brighton Women's History Roll Of Honor Accepting Nominations For 2021 Inductees - WHMI [Last Updated On: January 9th, 2021] [Originally Added On: January 9th, 2021]
- Who Has the Most Rushing Yards and Touchdowns in NFL Playoff History? - Sportscasting [Last Updated On: January 9th, 2021] [Originally Added On: January 9th, 2021]
- Denver's cataloguing its Latino and Chicano history through places and buildings - Denverite [Last Updated On: January 9th, 2021] [Originally Added On: January 9th, 2021]
- The Apple Car would wreck Apple, and Tesla's incredibly volatile history shows why - Business Insider [Last Updated On: January 9th, 2021] [Originally Added On: January 9th, 2021]
- America Is Not Exceptional. It Has a History of Violence. - The Intercept [Last Updated On: January 9th, 2021] [Originally Added On: January 9th, 2021]
- A brief history of the headscarf - CNN [Last Updated On: January 9th, 2021] [Originally Added On: January 9th, 2021]
- On this date in history: -60 temperature reported in Cameron, WI - WQOW TV News 18 [Last Updated On: January 9th, 2021] [Originally Added On: January 9th, 2021]
- Morning Flurries: WHL announcement and the Toronto Marlies make history - Mile High Hockey [Last Updated On: January 9th, 2021] [Originally Added On: January 9th, 2021]
- How Warnock and Ossoff's victories evoked the history of the Black freedom struggle - CNN [Last Updated On: January 9th, 2021] [Originally Added On: January 9th, 2021]
- Presidential Pours: A History of Wine in the White House - The Wall Street Journal [Last Updated On: January 9th, 2021] [Originally Added On: January 9th, 2021]
- Today in History - MyMotherLode.com [Last Updated On: January 9th, 2021] [Originally Added On: January 9th, 2021]
- Today in History: George Washington approved adding two stars, two stripes to the American flag - Lompoc Record [Last Updated On: January 13th, 2021] [Originally Added On: January 13th, 2021]
- More inclusive: Local principal, teacher to help review history education in Virginia - WYDaily [Last Updated On: January 13th, 2021] [Originally Added On: January 13th, 2021]
- Here's a salute to one of Ohio women's suffrage pioneers - Richland Source [Last Updated On: January 13th, 2021] [Originally Added On: January 13th, 2021]
- Police Commissioners brother, an SFPD sergeant, has a history of shootings and excessive force complaints - Mission Local [Last Updated On: January 13th, 2021] [Originally Added On: January 13th, 2021]
- On January 13 in NYR history: The longest unbeaten streak ever in the NHL - Blue Line Station [Last Updated On: January 13th, 2021] [Originally Added On: January 13th, 2021]
- Democratic Party history from the year you were born - Buffalo News [Last Updated On: January 13th, 2021] [Originally Added On: January 13th, 2021]
- A US history teacher tries to explain attacks - The Hechinger Report [Last Updated On: January 13th, 2021] [Originally Added On: January 13th, 2021]
- Ron Rivera Embraced History To Find Success In His First Season In Washington - Forbes [Last Updated On: January 13th, 2021] [Originally Added On: January 13th, 2021]
- The Mother Lode: This is history in the making - again - for kids - CT Insider [Last Updated On: January 13th, 2021] [Originally Added On: January 13th, 2021]
- The History Behind 'Mob' Mentality - The New York Times [Last Updated On: January 13th, 2021] [Originally Added On: January 13th, 2021]
- 'I saw my life flash before my eyes': An oral history of the Capitol attack | TheHill - The Hill [Last Updated On: January 13th, 2021] [Originally Added On: January 13th, 2021]
- The US Capitol attack fits into the history of White backlash - CNN [Last Updated On: January 13th, 2021] [Originally Added On: January 13th, 2021]
- Bylaws of the Department of History - Nevada Today [Last Updated On: January 13th, 2021] [Originally Added On: January 13th, 2021]
- Subversive Capital Acquisition Corp. Closes The Largest Cannabis SPAC In History And Announces The Launch Of The Parent Company With Shawn... [Last Updated On: January 15th, 2021] [Originally Added On: January 15th, 2021]
- Out of the Attic: The Moss Kendrix Collection at the Black History Museum - Alexandria Times [Last Updated On: January 15th, 2021] [Originally Added On: January 15th, 2021]
- How Does the Nets' Big Three Compare to Other Big Threes in NBA History? - InsideHook [Last Updated On: January 15th, 2021] [Originally Added On: January 15th, 2021]
- The Ku Klux Klans history is a warning about the Capitol riot - Vox.com [Last Updated On: January 15th, 2021] [Originally Added On: January 15th, 2021]
- New Phillies reliever made postseason history vs. Pat Neshek - That Balls Outta Here [Last Updated On: January 15th, 2021] [Originally Added On: January 15th, 2021]
- Lionel Gossman, specialist in French literature and history and 'one of the great humanists and scholar-teachers of his generation,' dies at 91 -... [Last Updated On: January 15th, 2021] [Originally Added On: January 15th, 2021]
- 'Southern Charm': Leva Bonaparte Is on The Right Side Of History. Are You? - Decider [Last Updated On: January 15th, 2021] [Originally Added On: January 15th, 2021]
- This Place in History: Warren Austin - Local 22/44 News [Last Updated On: January 15th, 2021] [Originally Added On: January 15th, 2021]
- Here's how Tom Brady and the Buccaneers could make NFL history if they win their next two playoff games - CBS Sports [Last Updated On: January 15th, 2021] [Originally Added On: January 15th, 2021]
- A History of the Trump Era Through Stories About Toilets - New York Magazine [Last Updated On: January 15th, 2021] [Originally Added On: January 15th, 2021]
- 'Alarmingly Similar.' What the Chaos Around Lincoln's First Inauguration Can Tell Us About Today, According to Historians - TIME [Last Updated On: January 15th, 2021] [Originally Added On: January 15th, 2021]
- A Brief Cultural History of Work Sucking - The New Republic [Last Updated On: January 15th, 2021] [Originally Added On: January 15th, 2021]
- Naples Underground Featured on the History Channel - PRNewswire [Last Updated On: January 15th, 2021] [Originally Added On: January 15th, 2021]
- Derby history is not kind to the Lecomte - VSiN [Last Updated On: January 15th, 2021] [Originally Added On: January 15th, 2021]
- Gandhi, History, and the Lessons of the Events at the Capitol - The New Yorker [Last Updated On: January 15th, 2021] [Originally Added On: January 15th, 2021]
- Will Donald Trump go down as the worst president in history? - CNN [Last Updated On: January 15th, 2021] [Originally Added On: January 15th, 2021]
- View and delete your browsing history in Internet Explorer [Last Updated On: January 15th, 2021] [Originally Added On: January 15th, 2021]
- View and delete browser history in Microsoft Edge [Last Updated On: January 15th, 2021] [Originally Added On: January 15th, 2021]
- This Day in History - What Happened Today - HISTORY [Last Updated On: January 15th, 2021] [Originally Added On: January 15th, 2021]
- History | discipline | Britannica [Last Updated On: January 15th, 2021] [Originally Added On: January 15th, 2021]
- History - Wikipedia [Last Updated On: January 15th, 2021] [Originally Added On: January 15th, 2021]
- The most memorable walkoff wins in Cubs history, Part 2: Original NL teams - Bleed Cubbie Blue [Last Updated On: February 2nd, 2021] [Originally Added On: February 2nd, 2021]
- Dustin Pedroia will always have a place in Red Sox history; what about the Hall of Fame? - CBS Sports [Last Updated On: February 2nd, 2021] [Originally Added On: February 2nd, 2021]
- Sundance: 'Judas and the Black Messiah' introduces 'a history thats been buried in this country' - USA TODAY [Last Updated On: February 2nd, 2021] [Originally Added On: February 2nd, 2021]
- Virginia teacher uses bowties to share history and teach life lessons - WAVY.com [Last Updated On: February 2nd, 2021] [Originally Added On: February 2nd, 2021]
- Kremlin critic Navalny tells court that Putin will go down in history as nothing but an 'underpants poisoner' - Yahoo News [Last Updated On: February 2nd, 2021] [Originally Added On: February 2nd, 2021]
- Trump's impeachment lawyers have a history of being involved in controversial legal matters - KCTV Kansas City [Last Updated On: February 2nd, 2021] [Originally Added On: February 2nd, 2021]
- 'Black History is a Verb': A young poet's message about Black history in America - KARE11.com [Last Updated On: February 2nd, 2021] [Originally Added On: February 2nd, 2021]
- February is Black History Month and Heart Month. Why one cardiologist says thats a good coincidence. - ABC27 [Last Updated On: February 2nd, 2021] [Originally Added On: February 2nd, 2021]
- Thanks to the Internet Archive, the history of American newspapers is more searchable than ever - Nieman Journalism Lab at Harvard [Last Updated On: February 2nd, 2021] [Originally Added On: February 2nd, 2021]
- Creativity Is the Focus of Black History Month 2021 | | SBU News - Stony Brook News [Last Updated On: February 2nd, 2021] [Originally Added On: February 2nd, 2021]
- This Black History Month, remember: History isnt here to make you feel good - Chicago Sun-Times [Last Updated On: February 2nd, 2021] [Originally Added On: February 2nd, 2021]
- Black History Month: How did it start, and why February? - 11Alive.com WXIA [Last Updated On: February 2nd, 2021] [Originally Added On: February 2nd, 2021]
- Comparing COVID-19 to other deadly diseases in U.S. history - CBS News 8 [Last Updated On: February 6th, 2021] [Originally Added On: February 6th, 2021]
- Talk of the Times: Touring the rich history of Cape Ann - Gloucester Daily Times [Last Updated On: February 6th, 2021] [Originally Added On: February 6th, 2021]
- Vice President Harris inspiring Black women and girls everywhere during Black History Month - Wink News [Last Updated On: February 6th, 2021] [Originally Added On: February 6th, 2021]
- Brookshire Grocery Company publishes book to share 92-year history - Weatherford Democrat [Last Updated On: February 6th, 2021] [Originally Added On: February 6th, 2021]
- Black History Month: Wyoming County was active on the Underground Railroad - The Daily News Online [Last Updated On: February 6th, 2021] [Originally Added On: February 6th, 2021]
- Suspect in NMSP officers death had an extensive criminal history - KTSM 9 News [Last Updated On: February 6th, 2021] [Originally Added On: February 6th, 2021]
- This week in history: Historical Society votes to move forward with fundraising for museum - Albert Lea Tribune - Albert Lea Tribune [Last Updated On: February 6th, 2021] [Originally Added On: February 6th, 2021]
- The topsy-turvy history of the Nissan Pathfinder - Autoblog [Last Updated On: February 6th, 2021] [Originally Added On: February 6th, 2021]
- God and government linked in history | Religion And Values | messenger-inquirer.com - messenger-inquirer [Last Updated On: February 6th, 2021] [Originally Added On: February 6th, 2021]
- Black History and Heritage - The San Diego Union-Tribune [Last Updated On: February 6th, 2021] [Originally Added On: February 6th, 2021]
- Behringer Crawford's NKY History Hour will feature Travis Brown and Locks and Dams of Ohio River - User-generated content [Last Updated On: February 6th, 2021] [Originally Added On: February 6th, 2021]
- History and Hope: A conversation with Seaside's John Nash - KSBW Monterey [Last Updated On: February 6th, 2021] [Originally Added On: February 6th, 2021]
- Today in History | National News - Tulsa World [Last Updated On: February 6th, 2021] [Originally Added On: February 6th, 2021]
- NFL: Protesting players 'on the right side of history,' union says - Reuters [Last Updated On: February 6th, 2021] [Originally Added On: February 6th, 2021]
- The True History Behind Netflix's 'The Dig' and Sutton Hoo - Smithsonian Magazine [Last Updated On: February 6th, 2021] [Originally Added On: February 6th, 2021]
- A look at the top rotations in Dodgers history - Los Angeles Times [Last Updated On: February 6th, 2021] [Originally Added On: February 6th, 2021]