Minisymposium: Solid State Physics in Neutron Stars: Crystallography and Superfluidity
FOCUS · D08 · ID: 1738193
Presentations
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Nuclear pasta and the deep inner crust
ORAL · Invited
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Publication: "Glassy quantum nuclear pasta in neutron star crusts", Physical Review C, Volume 105, Issue 2, article id.025806
"From neutron skins and neutron matter to the neutron star crust", Physics Letters B, Volume 834, article id. 137481
"Stretching nuclear pasta", in prepPresenters
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William G Newton
- Texas A&M University–Commerce
Authors
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William G Newton
- Texas A&M University–Commerce
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Jirina R Stone
- University of Oxford
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Mark A Kaltenborn
- George Washington University
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Amber Stinson
- Texas A&M University-Commerce
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Rebecca Preston
- Texas A&M University–Commerce
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Lauren E Balliet
- Texas A&M University–Commerce
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Michael Ross
- Texas A&M University–Commerce
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Shuxi Wang
- Texas A&M University
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Diffusion and Magnetic Fields in Simulations of Neutron Star Crusts
ORAL
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Presenters
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Matthew E Caplan
- Illinois State University
Authors
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Matthew E Caplan
- Illinois State University
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The role of A=33 mass chain in Urca Cooling of Accreting Neutron Star Crusts
ORAL
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Presenters
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Rahul Jain
- Michigan State University
Authors
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Rahul Jain
- Michigan State University
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Hendrik Schatz
- Michigan State University
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Wei Jia Ong
- Lawrence Livermore Natl Lab
- LLNL
- Lawrence Livermore National Laboratory
- Lawerence Livermore National Laboratory
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Kirby Hermansen
- Michigan State University
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Nabin Rijal
- Michigan State University
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Hannah Berg
- Michigan State University
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Paul A Deyoung
- Hope College
- Department of Physics, Hope College
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Eric Flynn
- Michigan State University
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Caley M Harris
- Michigan State University
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Sean N Liddick
- Michigan State University
- FRIB
- FRIB/NSCL
- Facility for Rare Isotope Beams, Michigan State University, East Lansing, MI 48824, USA
- FRIB/MSU
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Stephanie M Lyons
- Pacific Northwest National Laboratory
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Sara Miskovich
- Stanford Linear Accelerator Center
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Fernando Montes
- Facility for Rare Isotope Beams
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Timilehin H Ogunbeku
- FRIB
- Facility for Rare Isotope Beams
- Mississippi State University
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Alicia R Palmisano
- University of Tennessee, Knoxville
- UTK
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Andrea Richard
- Lawrence Livermore National Laboratory
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Mackenzie Smith
- Michigan State University
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Mallory K Smith
- Facility for Rare Isotope Beams
- FRIB
- Michigan State University
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Artemis Spyrou
- Michigan State University
- Department of Physics, Michigan State University
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Constraint on the mass and radius of GRB 200415A using the high-frequency QPOs
ORAL
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Publication: arXiv:2303.03150 [astro-ph,HE]
Presenters
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Hajime Sotani
Authors
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Hajime Sotani
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Equation of state for spin-polarized asymmetric nuclear matter with the cluster variational method
ORAL
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Publication: [1] H. Togashi, K. Nakazato, Y. Takehara, S. Yamamuro, H. Suzuki, and M. Takano, Nucl. Phys. A 961 (2017) 78.
[2] http://www.np. phys.waseda.ac.jp/EOS/Presenters
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Hajime Togashi
- Daegu Univ
Authors
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Hajime Togashi
- Daegu Univ
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Masatoshi Takano
- Waseda Univ
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Quasiparticle properties of an impurity trapped in a superfluid quantized vortex
ORAL
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Presenters
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Kazunari Ochi
- Kochi University
Authors
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Kazunari Ochi
- Kochi University
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Eiji Nakano
- Kochi University
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Kei Iida
- Kochi University
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Hiroyuki Tajima
- University of Tokyo
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Junichi Takahashi
- Waseda University
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Time-Dependent Slef-Consistent Band Theory for the Inner Crust of Neutron Stars: Anti-Entrainment Effects in the Slab Phase
ORAL
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Publication: [1] K. Sekizawa, S. Kobayashi, and M. Matsuo, Time-dependent extension of the self-consistent band theory for neutron star matter: Anti-entrainment effects in the slab phase, Phys. Rev. C 105, 045807 (2022).
Presenters
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Kazuyuki Sekizawa
- Tokyo Institute of Technology
Authors
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Kazuyuki Sekizawa
- Tokyo Institute of Technology
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Kenta Yoshimura
- Tokyo Institute of Technology
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Masayuki Matsuo
- Niigata University
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Superfluid and Finite-Temperature Extensions of Self-Consistent Band Theory for the Inner Crust of Neutron Stars
ORAL
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Publication: K. Yoshimura and K. Sekizawa, Superfluid extension of the self-consistent time-dependent band theory for neutron star matter: Anti-entrainment vs. superfluid effects in the slab phase, arXiv:2306.03327 [nucl-th].
Presenters
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Kenta Yoshimura
- Tokyo Institute of Technology
Authors
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Kenta Yoshimura
- Tokyo Institute of Technology
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Kazuyuki Sekizawa
- Tokyo Institute of Technology
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