Quantum chaos in optical microcavities
64 pages

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Quantum chaos in optical microcavities

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Description

Niveau: Secondaire
Quantum chaos in optical microcavities J. Wiersig Institute for Theoretical Physics, Otto-von-Guericke University, Magdeburg Collaborations J. Unterhinninghofen (Magdeburg) M. Hentschel (Dresden) J. Main (Stuttgart) H. Schomerus (Lancaster) Supported by the DFG research group “Scattering Systems with Complex Dynamics”

  • nanostructures nonlinear

  • light emission

  • semiconductor nanostructures

  • unidirectional light

  • avoided resonance crossings

  • optical microcavities


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Nombre de lectures 50
Poids de l'ouvrage 8 Mo

Extrait

Quantum chaos in optical microcavities
J. Wiersig
Institute for Theoretical Physics, Otto-von-Guericke University, Magdeburg
Collaborations J. Unterhinninghofen (Magdeburg) M. Hentschel (Dresden) J. Main (Stuttgart) H. Schomerus (Lancaster)
Supported by the DFG research group “Scattering Systems with Complex Dynamics”
snednoKraMnetreiTdeieorheeIteri
D. Heitmann/T. Kipp et al., Hamburg
D. Hommel/A. Rosenauer et al., Bremen Optical properties of microcavities
Dr. habil. G. Kasner
W.eisrgiJ2
Nonlinear dynamics and charge transport in nanostructures
Light−matter interaction in semiconductor nanostructures
Prof. J. Wiersig
S.W. Cho and Y.D. Park, Seoul Quasicrystals
I.R. Fischer et al., Iowa
Dipl.−Phys. J. Unterhinninghofen
CIRM2008
iW.JisreRICg002M
Nonlinear dynamics and charge transport in nanostructures
82
S.W. Cho and Y.D. Park, Seoul Quasicrystals
I.R. Fischer et al., Iowa
Light−matter interaction in semiconductor nanostructures
Prof. J. Wiersig
D. Hommel/A. Rosenauer et al., Bremen Optical properties of microcavities
D. Heitmann/T. Kipp et al., Hamburg
Dipl.−Phys. J. Unterhinninghofen
Dr. habil. G. Kasner
etMnisreeiItareriedTheondenerKo
J.O
1
2
3
4
5
iWeurltnie
Introduction to optical microcavities
Avoided resonance crossings Avoided crossings despite integrability Formation of long-lived, scarlike modes Unidirectional light emission from high-Qmodes
Unidirectional light emission and universal far-eld patterns
Fractal Weyl law
Summary
sigCIRM20083
J.
Wiersig
Introduction
to
optical
microcavities
CIRM
2008
4
tunneling
troetfalle citnitoenrnal φ 2 φc φ φ
φ 0 φc
Light connement due to TIR
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