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Theoretical physicists working at a blackboard collaboration pod in the Beecroft building.
Credit: Jack Hobhouse

Bence Kocsis

Associate Professor of Theoretical Astrophysics

Research theme

  • Astronomy and astrophysics

Sub department

  • Rudolf Peierls Centre for Theoretical Physics

Research groups

  • Galaxy formation and evolution
  • Pulsars, transients and relativistic astrophysics
  • Theoretical astrophysics and plasma physics at RPC
bence.kocsis@physics.ox.ac.uk
Telephone: 01865 273959
Rudolf Peierls Centre for Theoretical Physics, room 50.08
  • About
  • Publications

Distortion of Gravitational-Wave Packets Due to their Self-Gravity

(2007)

Authors:

Bence Kocsis, Abraham Loeb
More details from the publisher

Dynamics of coarse grained dislocation densities from an effective free energy

The Philosophical Magazine A Journal of Theoretical Experimental and Applied Physics Taylor & Francis 87:8-9 (2007) 1185-1199

Authors:

I Groma, G Györgyi, B Kocsis
More details from the publisher

Pre-Merger Localization of Gravitational-Wave Standard Sirens With LISA I: Harmonic Mode Decomposition

(2007)

Authors:

Bence Kocsis, Zoltán Haiman, Kristen Menou, Zsolt Frei
More details from the publisher

Detection Rate Estimates of Gravity Waves Emitted during Parabolic Encounters of Stellar Black Holes in Globular Clusters

The Astrophysical Journal American Astronomical Society 648:1 (2006) 411-429

Authors:

Bence Kocsis, Merse Előd Gáspár, Szabolcs Márka
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Details from ArXiV

Debye screening of dislocations.

Physical review letters 96:16 (2006) 165503

Authors:

I Groma, G Györgyi, B Kocsis

Abstract:

Debye-like screening by edge dislocations of some externally given stress is studied by means of a variational approach to coarse grained field theory. Explicitly given are the force field and the induced geometrically necessary dislocation (GND) distribution, in the special case of a single glide axis in 2D, for (i) a single edge dislocation and (ii) a dislocation wall. Numerical simulation demonstrates that the correlation in relaxed dislocation configurations is in good agreement with the induced GND in case (i). Furthermore, the result (ii) well predicts the experimentally observed decay length for the GND developing close to grain boundaries.
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