stanford computational astrophysics

Visit the Computational Astrophysics page on the KIPAC website for more info », .box-about > div:before { The Stanford Artificial Retina Project is a highly collaborative effort currently involving the Chichilnisky lab, three electrical engineering faculty and their labs, a retinal surgeon, and several visiting collaborators and consultants. Such simulations produce detailed solutions to highly complex problems in stellar evolution, galactic dynamics, numerical cosmology, and many other fields. .box-about .subtitle { She is the recipient of the 2013 SLAC and Stanford astrophysicists made crucial contributions to the galaxy survey, showing that the universe clumps and expands as predicted by our best cosmological models. .box-about figure { Graduate programs in astronomy and astrophysics and related topics are carried out primarily in the Department of Physics but also the departments of Applied Physics and Electrical Engineering. padding: 14px; .box-about > div:after { float: right; color: #871628; } font-size: 12px; SLAC scientists find a new way to explain how a black hole’s plasma jets boost particles to the highest energies observed in the universe. Computational astrophysics refers to the methods and computing tools developed and used in astrophysics research. Physicists and scientific computing experts prepare for an onslaught of petabytes. font-size: 13px; margin: 0 27px 20px 0; } .box-about figure img { display: table; } Ever since the 1920s, the machines – which spur charged particles to near light speeds before crashing them together – have grown ever larger, more complex and more powerful. The Kavli Institute for Particle Astrophysics and Cosmology, or KIPAC, was inaugurated in 2003 as an independent laboratory of Stanford University to serve as a bridge between the disciplines of astrophysics, cosmology and particle physics. BOLD PEOPLE. He was the director of the Kavli Institute for Particle Astrophysics and Cosmology and Division Director at SLAC 2013-2018. This includes theoretical calculations as well as calculations relevant observations and experiments—from simulating telescopes and their data to processing the enormous amounts of data being collected by the instruments. Finding ways to handle torrents of data from LSST and LCLS-II will also advance “exascale” computing. margin-top: 20px; } A SLAC/Stanford study of the population of satellite galaxies orbiting the Milky Way provides new clues about the particle nature of dark matter. Operated by Stanford University for the U.S. Department of Energy Office of Science, 2575 Sand Hill Road, Menlo Park, CA 94025, PAC | Particle Astrophysics and Cosmology, Rubin Observatory’s Legacy Survey of Space and Time (LSST), U.S. Department of Energy Office of Science. .box-about > div > ul li { Computing is important to nearly all of SLAC's astrophysics and cosmology scientific activities. Current research in theoretical astrophysics and cosmology at Stanford explores a wide range of critical questions. In astrophysics, computing is our only laboratory. SLAC NATIONAL ACCELERATOR LABORATORY 2575 Sand Hill Road, Menlo Park, CA 94025Operated by Stanford University for the U.S. Department of Energy Office of Science. Computational Astrophysics Cosmic Microwave Background (CMB) Cryogenic Dark Matter Search (CDMS) Dark Energy Survey (DES) Fermi Gamma-ray Space Telescope (FGST) LUX-ZEPLIN (LZ) Rubin Observatory’s Legacy } width: auto; } SLAC and Stanford astrophysicists made crucial contributions to the galaxy survey, showing that the universe clumps and expands as predicted by our best cosmological models. .box-about > div > ul { .box-about figure.positition-left { Like computational chemistry or computational physics, it is both a … margin-bottom: 3px !important; } However, programming supercomputers with the equations describing the physics of these amazing events allows us to see what happens on a human timescale. Astrophysics Through Computation [electronic resource] : With Mathematica® Support in SearchWorks catalog We are motivated by various applications in many fields, including plasma photonics, metamaterials, space propulsion, fusion, and renewable energy. KIPAC serves as a bridge between the disciplines of astrophysics, cosmology and particle physics, with special emphasis on cosmic structure, dark energy, dark matter, the early universe, compact objects and natural particle accelerators. These computations are compared with observed data, which provides input to the models, and refines our understanding of how the universe came to be the way it is. display: table; .box-about > div.shaded { content: " "; Shea Hess Webber is part of Stanford Profiles, official site for faculty, postdocs, students and staff information (Expertise, Bio, Research, Publications, and more). Tom Abel, Professor Particle Physics and Astrophysics SLAC National Accelerator Laboratory 2575 Sand Hill Road MS 29 Menlo Park, CA 94025 (650) 926-2421 tabel@slac.stanford.edu KIPAC Computational Physics We engage in experimental, theoretical, and computational research in plasma physics. .box-about > div > ul li a { margin-left: 10px; PhD Position in Computational Astrophysics, is offered for PhD degree in the field of Computational Astrophysics. In this way, SLAC researchers are following how the entire large scale structure of the universe evolved over all of cosmic time. It would take hundreds of millions of years to study the outcome of a galaxy collision. The results could also prove useful for fusion and accelerator research on Earth. Welcome to the Stanford Plasma Physics Lab! max-width: 70%; height: auto; You can apply to this scholarship here. background-color: #dfdfdf; font-size: 0.75rem; border: 0 none} Computational Astrophysics KIPAC researchers tackle a wide range of computational challenges as part of a mission to bridge the theoretical and experimental physics communities, enabling them to bring their combined strength to bear on some of the most challenging and fascinating problems in particle astrophysics and cosmology. One has to include how gravity tugs on things, how gas pressure and magnetic fields push against it, how dark matter behaves differently from regular matter, how light emitted from gas depletes its thermal energy, and so on. .box-about article { margin: 0 0 15px 20px; } Computational astrophysics is the simulation of astrophysical phenomena on a computer by numerical integration of the relevant governing equations. float: right; Our course offerings range from Freshman seminars to advanced graduate classes. She earned her Ph.D. in Physics from Stanford University and her B.S. Our research is led by the joint SLAC-Stanford Kavli Institute for Particle Astrophysics and Cosmology. Computational plasma physics : with applications to fusion and astrophysics in SearchWorks catalog width: auto; PHYSICS 113: Computational Physics Numerical methods for solving problems in mechanics, astrophysics, electromagnetism, quantum mechanics, and statistical mechanics. Stanford Libraries' official online search tool for books, media, journals, databases, government documents and more. color: #871628; }. max-width: 100%; clear: both; Menlo Park, Calif. — Researchers from the Department of Energy’s SLAC National Accelerator Laboratory and Stanford University have for the first time shown that neural networks – a form of artificial intelligence – can accurately analyze the complex distortions in spacetime known as gravitational lenses 10 million times faster than traditional methods. If we want to understand what happens when a star gets consumed by a black hole or what happens when galaxies collide it is computing that allows us to experiment. Drawing from data on those galactic neighbors, a new model suggests the Milky Way should have an additional 100 or so very faint satellite galaxies awaiting discovery. font-style: italic; .link-reference a { First objects in the universe, relativistic astrophysics, neutron stars, black holes, inflation, cosmic evolution and structure. padding: 20px; } SLAC's Computational Astrophysics group is part of the research program of the SLAC–Stanford Kavli Institute for Particle Astrophysics and Cosmology. ], but I hated the publish or perish drive in academia. width: 147px; Although Stanford University does not have a degree program in astronomy or astrophysics, teaching and research in various branches of these disciplines are ongoing activities in the departments of Applied Physics, Physics, SLAC National Accelerator Laboratory, … So I did computational astrophysics phd and postdoc before I left that career. The use of high-performance computing allows computational astrophysicists to create simulations that extend over cosmic times and distances. margin-left: 10px; margin: 0; } content: " "; font-size: 0.8125rem; } } REAL IMPACT. Stanford News The history of particle accelerators is one of seemingly constant one-upmanship. The Dark Energy Spectroscopic Instrument will measure light from 35 million cosmic objects for new insights into what causes the universe to expand faster and faster. The role of computation in astrophysics has grown substantially over the last decade, driven by the growth in computer power, sophistication of computational methodologies, and increasing data volumes. At the Kavli Institute for Particle Astrophysics and Cosmology (KIPAC), researchers from SLAC and Stanford bring the resources of modern computational, observational and theoretical science to bear on our understanding of the universe., observational and theoretical science to … border: 2px solid white; .box-about figure.positition-right { float: right; SLAC's Computational Astrophysics group seeks to bridge theoretical and experimental physics communities to bring their combined strength to bear on some of the most challenging and fascinating problems in particle astrophysics and cosmology. font-size: 15px; Interested candidates should submit their applications at https://academicjobsonline For more information about SLAC's involvement in computational astrophysics, please contact Tom Abel. display: block; Laboratory Directed Research & Development (LDRD), The Milky Way’s satellites help reveal link between dark matter halos and galaxy formation, Light dark matter is a thousand times less likely to bump into regular matter than previous astrophysical analyses allowed, Tangled magnetic fields power cosmic particle accelerators, Artificial Intelligence Analyzes Gravitational Lenses 10 Million Times Faster, Standard Model of the Universe Withstands Most Precise Test by Dark Energy Survey, Q&A: SLAC Cosmology Research Featured in Terrence Malick’s ‘Voyage of Time’, DOE Approves Construction of 3-D Galaxy-mapping Project ‘DESI’, SLAC’s New Computer Science Division Teams with Stanford to Tackle Data Onslaught, SLAC Researchers Recreate the Extreme Universe in the Lab, U.S. Department of Energy Office of Science. float: left; Computational Astrophysics KIPAC researchers tackle a wide range of computational challenges as part of a mission to bridge the theoretical and experimental physics communities, enabling them to bring their combined strength to bear on some of the most challenging and fascinating problems in particle astrophysics and cosmology. Just like we orbit the sun and the moon orbits us, the Milky Way has satellite galaxies with their own satellites. } I loved many parts of it [notably the computing and the astronomy! We enjoy close connections to Applied Physics and departments at SLAC. margin-bottom: 10px; E.J The site facilitates research and collaboration in academic endeavors. font-size: 0.9375rem; KIPAC’s Ralf Kaehler and Tom Abel contributed two scenes to the science documentary narrated by Brad Pitt and Cate Blanchett. margin-bottom: 10px; November 15, 2016 in Physics from Tsinghua University. background-color: whitesmoke; Stanford Libraries' official online search tool for books, media, journals, databases, government documents and more. Computing is important to nearly all of SLAC's astrophysics and cosmology scientific activities. Stanford Physics is a teaching and research department. clear: right; VISIONARY SCIENCE. The deadline for the … margin: 0 0 20px 27px; } .box-about figure.large-image { Computer simulations and lab experiments help researchers understand the violent universe and could potentially lead to new technologies that benefit humankind. .link-reference { We are able to do this by carefully devising accurate and stable algorithms that capture the enormous length and time scales of these astronomical and cosmological processes. Theoretical Astrophysics and Cosmology Calculating and modeling the physics of the cosmos. SLAC's Computational Astrophysics group seeks to bridge theoretical and experimental physics communities to bring their combined strength to bear on some of the most challenging and fascinating problems in particle astrophysics and cosmology. Yajie is a Flatiron Research Fellow at the Center for Computational Astrophysics. SLAC and Stanford are partners in the Kavli Institute for Particle Astrophysics and Cosmology, which enables a broad program in astrophysics. 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