Analytical Methods in Gravitation

ORAL · G08 · ID: 1365982






Presentations

  • The Force-Free Electromagnetic Field in Kerr Geometry: The Search for Analytic Solutions

    ORAL

    Publication: Recent Publications
    Menon, G., "The Non-Null and Force-free Electromagnetic Field ", Classical and Quantum Gravity, (2021)
    Menon, G., "The Null and Force-free Electromagnetic Field ", Classical and Quantum Gravity, (2020)
    Menon, G., "Force-free electrodynamics and Foliations in an arbitrary spacetime ", Classical and Quantum Gravity, (2020)

    Presenters

    • Govind Menon

      Troy University

    Authors

    • Govind Menon

      Troy University

    • Rakshak Adhikari

      University of Kansas

    • Mikhail V Medvedev

      University of Kansas & MIT

    View abstract →

  • Dynamics of ultrarelativistic charged particles with strong radiation reaction

    ORAL

    Publication: [1] E. Poisson, "An Introduction to the Lorentz-Dirac
    equation," gr-qc/9912045. I, II
    [2] L. D. Landau and E. M. Lifshitz, The Classical Theory
    of Fields: Volume 2 (Course of Theoretical Physics
    Series) 4th Edition. Butterworth-Heinemann, 1980. 1,
    II, II
    [3] S. E. Gralla, A. I. Harte, and R. M. Wald, "A Rigorous
    Derivation of Electromagnetic Self-force," Phys. Rev. D
    80 (2009) 024031, 0905.2391.
    [4] A. Di Piazza, C. Muller, K. Z. Hatsagortsyan, and
    C. H. Keitel, "Extremely high-intensity laser
    interactions with fundamental quantum systems," Rev.
    Mod. Phys. 84 (2012) 1177, 1111.3886. I, 1, II, II
    [5] Fermi-LAT Collaboration, A. A. Abdo et al., "The
    First Fermi Large Area Telescope Catalog of
    Gamma-ray Pulsars," Astrophys. J. Suppl. 187 (2010)
    460–494, 0910.1608. [Erratum: Astrophys.J.Suppl. 193,
    22 (2011)]. I
    [6] Fermi-LAT Collaboration, A. A. Abdo et al., "The
    Second Fermi Large Area Telescope Catalog of
    Gamma-ray Pulsars," Astrophys. J. Suppl. 208 (2013)
    17, 1305.4385. I
    [7] A. Gruzinov, "Aristotelian Electrodynamics solves the
    Pulsar: Lower Efficiency of Strong Pulsars," 1303.4094.
    I, 3, I, I, A 3, A 3
    [8] A. Gruzinov, "Pulsar Emission Spectrum," arXiv
    e-prints (Sept., 2013) arXiv:1309.6974, 1309.6974. A 3,
    A 3
    [9] J. P ´etri, "Pulsar gamma-ray emission in the radiation
    reaction regime," Mon. Not. Roy. Astron. Soc. 484
    (2019), no. 4, 5669–5691, 1901.11439.
    [10] G. Cao and X. Yang, "Three-dimensional dissipative
    pulsar magnetospheres with Aristotelian
    electrodynamics," 1912.00335.
    [11] G. Cao and X. Yang, "The Pulsar Gamma-Ray
    Emission from High-resolution Dissipative
    Magnetospheres," Astrophys. J. 925 (2022), no. 2, 130,
    2104.09802.
    [12] J. P ´etri, "Radiative pulsar magnetospheres: oblique
    rotators," Mon. Not. Roy. Astron. Soc. 512 (2022),
    no. 2, 2854, 2202.12712. I
    [13] H.Herold, T. Ertl, and H. Ruder Mitteilungen der
    Astronomischen Gesellschaft 63 (1985) 174. 3, I, A 1,
    A 1, A 1, A 1
    [14] L. Mestel, J. Robertson, Y.-M. Wang, and K. Westfold,
    "The axisymmetric pulsar magnetosphere," Monthly
    Notices of the Royal Astronomical Society 217 (1985),
    no. 3, 443–484. I, 3, A 2, A 2, 8, A 2
    [15] A. Gonoskov and M. Marklund, "Radiation-dominated
    particle and plasma dynamics," Phys. Plasmas 25
    (2018), no. 9, 093109, 1707.05749. 3, I, A 4, A 4, A 4,
    A 4
    [16] T. Jacobson, "Structure of Aristotelian
    Electrodynamics," Phys. Rev. D 92 (2015), no. 2,
    025029, 1504.07311. I, I, IV D
    [17] R. Penrose and W. Rindler, SPINORS AND
    SPACE-TIME. VOL. 2: SPINOR AND TWISTOR
    METHODS IN SPACE-TIME GEOMETRY.
    Cambridge Monographs on Mathematical Physics.
    Cambridge University Press, 4, 1988. I
    [18] B.Finkbeiner, H.Herold, T. Ertl, and H. Ruder
    Astronomy and astrophysics 225 (1989) 479. I, A 1, A 1
    [19] A. S. Samsonov, E. N. Nerush, and I. Y. Kostyukov,
    "Asymptotic electron motion in the
    strongly-radiation-dominated regime," Phys. Rev. A 98
    (2018), no. 5, 053858, 1807.04071.
    [20] R. Ekman, T. Heinzl, and A. Ilderton, "Exact solutions
    in radiation reaction and the radiation-free direction,"
    New J. Phys. 23 (2021), no. 5, 055001, 2102.11843.
    [21] A. Gonoskov, T. G. Blackburn, M. Marklund, and S. S.
    Bulanov, "Charged particle motion and radiation in
    strong electromagnetic fields," 2107.02161. I, A 4
    [22] Y. Cai, S. Gralla, and V. Paschalidis in preparation. I, V
    [23] N. Elkina, A. Fedotov, C. Herzing, and H. Ruhl,
    "Accurate numerical simulation of radiation reaction
    effects in strong electromagnetic fields."
    arXiv:1401.7881, 2014. V
    [24] H. Heintzmann and E. Schr ¨ufer, "Exact of the
    Lorentz-Dirac equations of motion for charged particles
    in constant electromagnetic fields," Phys. Rev. A 43
    (1973), no. 3, 287–288. A 4

    Presenters

    • Yangyang Cai

      University of Arizona

    Authors

    • Yangyang Cai

      University of Arizona

    • Samuel E Gralla

      University of Arizona

    • Vasileios Paschalidis

      University of Arizona

    View abstract →

  • Coordinate Invariant Limits of the Reisner-Nordstrom spacetime

    ORAL

    Presenters

    • William Julius

      Baylor University

    Authors

    • William Julius

      Baylor University

    • Matthew Gorban

      Baylor University

    • Gerald B Cleaver

      Baylor University

    • Christian Brown

      Baylor University

    • David McNutt

      The Arctic University of Norway, Institute of Mathematics and Statistics, University of Tromsø

    View abstract →

  • The Subclassification Problem for Stationary Axisymmetric Spacetimes

    ORAL

    Presenters

    • Christian Brown

      Baylor University

    Authors

    • Christian Brown

      Baylor University

    • David McNutt

      The Arctic University of Norway, Institute of Mathematics and Statistics, University of Tromsø

    • Ramesh Radhakrishnan

      Baylor University

    • William Julius

      Baylor University

    • Matthew Gorban

      Baylor University

    • Gerald B Cleaver

      Baylor University

    View abstract →

  • Fast eccentric and inclined inspirals into a rotating black hole

    ORAL

    Publication: "Eccentric self-forced inspirals into a rotating black hole", P. Lynch, M. van de Meent, N. Warburton, 2022 Class. Quantum Grav. 39 145004
    "Spherical self-forced inspirals into a rotating black hole", P. Lynch, M. van de Meent, N. Warburton, (In Preperation)
    "Fast generic inspirals into a rotating black hole", P. Lynch, V. Witzany, M. van de Meent, N. Warburton, (In Preperation)

    Presenters

    • Philip A Lynch

      Albert Einstein Institute, Potsdam

    Authors

    • Philip A Lynch

      Albert Einstein Institute, Potsdam

    • Maarten van de Meent

      Albert Einstein Institute, Potsdam

    • Vojtech Witzany

      University College Dublin

    • Niels Warburton

      University College Dublin

    View abstract →