Multidisciplinary Science in the Multimessenger Era
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| Format: | Preprint |
| Published: |
2025
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| _version_ | 1866908298125508608 |
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| author | Burns, Eric Fryer, Christopher L. Agullo, Ivan Andrews, Jennifer Aydi, Elias Baring, Matthew G. Baron, Eddie Boorman, Peter G. Boroumand, Mohammad Ali Borowski, Eric Broekgaarden, Floor S. Chandra, Poonam Chatzopoulos, Emmanouil Chen, Hsin-Yu Chipps, Kelly A. Civano, Francesca Comisso, Luca Cárdenas-Avendaño, Alejandro Dang, Phong Deibel, Catherine M. Eftekhari, Tarraneh Elliott, Courey Foley, Ryan J. Fontes, Christopher J. Gall, Amy Galleher, Gwendolyn R. Gonzalez, Gabriela Guo, Fan Hamilton, Maria C. Babiuc Harding, J. Patrick Henning, Joseph Herwig, Falk Hix, William Raphael Ho, Anna Y. Q. Holley-Bockelmann, Kelly Hounsell, Rebekah Hui, C. Michelle Humensky, Thomas Brian Hungerford, Aimee Hynes, Robert I. Jin, Weidong Johns, Heather Johnson, Maria Gatu Kennea, Jamie A. Kuranz, Carolyn Lamb, Gavin P. Launey, Kristina D. Lewis, Tiffany R. Liodakis, Ioannis Livescu, Daniel Loch, Stuart MacDonald, Nicholas R. Maccarone, Thomas Marcotulli, Lea Meli, Athina Messer, Bronson Miller, M. Coleman Milton, Valarie Most, Elias R. Mumma, Darin C. Mumpower, Matthew R. Negro, Michela Neights, Eliza Nugent, Peter Pasham, Dheeraj R Radice, David Rani, Bindu Read, Jocelyn S. Reifarth, Rene Reily, Emily Rhodes, Lauren Richard, Andrea Ricker, Paul M. Roberts, Christopher J. Schatz, Hendrik Shawhan, Peter Takacs, Endre Tomsick, John A. Trigg, Aaron C. Urbatsch, Todd Vassh, Nicole Villar, V. Ashley Wadiasingh, Zorawar Waratkar, Gaurav Zingale, Michael |
| author_facet | Burns, Eric Fryer, Christopher L. Agullo, Ivan Andrews, Jennifer Aydi, Elias Baring, Matthew G. Baron, Eddie Boorman, Peter G. Boroumand, Mohammad Ali Borowski, Eric Broekgaarden, Floor S. Chandra, Poonam Chatzopoulos, Emmanouil Chen, Hsin-Yu Chipps, Kelly A. Civano, Francesca Comisso, Luca Cárdenas-Avendaño, Alejandro Dang, Phong Deibel, Catherine M. Eftekhari, Tarraneh Elliott, Courey Foley, Ryan J. Fontes, Christopher J. Gall, Amy Galleher, Gwendolyn R. Gonzalez, Gabriela Guo, Fan Hamilton, Maria C. Babiuc Harding, J. Patrick Henning, Joseph Herwig, Falk Hix, William Raphael Ho, Anna Y. Q. Holley-Bockelmann, Kelly Hounsell, Rebekah Hui, C. Michelle Humensky, Thomas Brian Hungerford, Aimee Hynes, Robert I. Jin, Weidong Johns, Heather Johnson, Maria Gatu Kennea, Jamie A. Kuranz, Carolyn Lamb, Gavin P. Launey, Kristina D. Lewis, Tiffany R. Liodakis, Ioannis Livescu, Daniel Loch, Stuart MacDonald, Nicholas R. Maccarone, Thomas Marcotulli, Lea Meli, Athina Messer, Bronson Miller, M. Coleman Milton, Valarie Most, Elias R. Mumma, Darin C. Mumpower, Matthew R. Negro, Michela Neights, Eliza Nugent, Peter Pasham, Dheeraj R Radice, David Rani, Bindu Read, Jocelyn S. Reifarth, Rene Reily, Emily Rhodes, Lauren Richard, Andrea Ricker, Paul M. Roberts, Christopher J. Schatz, Hendrik Shawhan, Peter Takacs, Endre Tomsick, John A. Trigg, Aaron C. Urbatsch, Todd Vassh, Nicole Villar, V. Ashley Wadiasingh, Zorawar Waratkar, Gaurav Zingale, Michael |
| contents | Astrophysical observations of the cosmos allow us to probe extreme physics and answer foundational questions on our universe. Modern astronomy is increasingly operating under a holistic approach, probing the same question with multiple diagnostics including how sources vary over time, how they appear across the electromagnetic spectrum, and through their other signatures, including gravitational waves, neutrinos, cosmic rays, and dust on Earth. Astrophysical observations are now reaching the point where approximate physics models are insufficient. Key sources of interest are explosive transients, whose understanding requires multidisciplinary studies at the intersection of astrophysics, gravity, nuclear science, plasma physics, fluid dynamics and turbulence, computation, particle physics, atomic, molecular, and optical science, condensed matter and materials science, radiation transport, and high energy density physics. This white paper provides an overview of the major scientific advances that lay at the intersection of physics and astronomy and are best probed through time-domain and multimessenger astrophysics, an exploration of how multidisciplinary science can be fostered, and introductory descriptions of the relevant scientific disciplines and key astrophysical sources of interest. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2502_03577 |
| institution | arXiv |
| publishDate | 2025 |
| record_format | arxiv |
| spellingShingle | Multidisciplinary Science in the Multimessenger Era Burns, Eric Fryer, Christopher L. Agullo, Ivan Andrews, Jennifer Aydi, Elias Baring, Matthew G. Baron, Eddie Boorman, Peter G. Boroumand, Mohammad Ali Borowski, Eric Broekgaarden, Floor S. Chandra, Poonam Chatzopoulos, Emmanouil Chen, Hsin-Yu Chipps, Kelly A. Civano, Francesca Comisso, Luca Cárdenas-Avendaño, Alejandro Dang, Phong Deibel, Catherine M. Eftekhari, Tarraneh Elliott, Courey Foley, Ryan J. Fontes, Christopher J. Gall, Amy Galleher, Gwendolyn R. Gonzalez, Gabriela Guo, Fan Hamilton, Maria C. Babiuc Harding, J. Patrick Henning, Joseph Herwig, Falk Hix, William Raphael Ho, Anna Y. Q. Holley-Bockelmann, Kelly Hounsell, Rebekah Hui, C. Michelle Humensky, Thomas Brian Hungerford, Aimee Hynes, Robert I. Jin, Weidong Johns, Heather Johnson, Maria Gatu Kennea, Jamie A. Kuranz, Carolyn Lamb, Gavin P. Launey, Kristina D. Lewis, Tiffany R. Liodakis, Ioannis Livescu, Daniel Loch, Stuart MacDonald, Nicholas R. Maccarone, Thomas Marcotulli, Lea Meli, Athina Messer, Bronson Miller, M. Coleman Milton, Valarie Most, Elias R. Mumma, Darin C. Mumpower, Matthew R. Negro, Michela Neights, Eliza Nugent, Peter Pasham, Dheeraj R Radice, David Rani, Bindu Read, Jocelyn S. Reifarth, Rene Reily, Emily Rhodes, Lauren Richard, Andrea Ricker, Paul M. Roberts, Christopher J. Schatz, Hendrik Shawhan, Peter Takacs, Endre Tomsick, John A. Trigg, Aaron C. Urbatsch, Todd Vassh, Nicole Villar, V. Ashley Wadiasingh, Zorawar Waratkar, Gaurav Zingale, Michael High Energy Astrophysical Phenomena General Relativity and Quantum Cosmology Nuclear Experiment Nuclear Theory Atomic Physics Astrophysical observations of the cosmos allow us to probe extreme physics and answer foundational questions on our universe. Modern astronomy is increasingly operating under a holistic approach, probing the same question with multiple diagnostics including how sources vary over time, how they appear across the electromagnetic spectrum, and through their other signatures, including gravitational waves, neutrinos, cosmic rays, and dust on Earth. Astrophysical observations are now reaching the point where approximate physics models are insufficient. Key sources of interest are explosive transients, whose understanding requires multidisciplinary studies at the intersection of astrophysics, gravity, nuclear science, plasma physics, fluid dynamics and turbulence, computation, particle physics, atomic, molecular, and optical science, condensed matter and materials science, radiation transport, and high energy density physics. This white paper provides an overview of the major scientific advances that lay at the intersection of physics and astronomy and are best probed through time-domain and multimessenger astrophysics, an exploration of how multidisciplinary science can be fostered, and introductory descriptions of the relevant scientific disciplines and key astrophysical sources of interest. |
| title | Multidisciplinary Science in the Multimessenger Era |
| topic | High Energy Astrophysical Phenomena General Relativity and Quantum Cosmology Nuclear Experiment Nuclear Theory Atomic Physics |
| url | https://arxiv.org/abs/2502.03577 |