Search Results - "Kwong, N. H"

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  1. 1

    Relation between the interband dipole and momentum matrix elements in semiconductors by Gu, B., Kwong, N. H., Binder, R.

    “…It is shown that a frequently used relation between the interband momentum and dipole matrix elements (shortened to the "p-r relation") in semiconductors…”
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    Journal Article
  2. 2

    Optically Controlled Orbital Angular Momentum Generation in a Polaritonic Quantum Fluid by Luk, S M H, Kwong, N H, Lewandowski, P, Schumacher, S, Binder, R

    Published in Physical review letters (15-09-2017)
    “…Applications of the orbital angular momentum (OAM) of light range from the next generation of optical communication systems to optical imaging and optical…”
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    Journal Article
  3. 3

    Real-time kadanoff-baym approach to plasma oscillations in a correlated electron Gas by Kwong, N, Bonitz, M

    Published in Physical review letters (21-02-2000)
    “…A nonequilibrium Green's functions approach to the collective response of correlated Coulomb systems at finite temperatures is presented. It is shown that…”
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    Journal Article
  4. 4

    Formation and control of Turing patterns in a coherent quantum fluid by Ardizzone, Vincenzo, Lewandowski, Przemyslaw, Luk, M. H., Tse, Y. C., Kwong, N. H., Lücke, Andreas, Abbarchi, Marco, Baudin, Emmanuel, Galopin, Elisabeth, Bloch, Jacqueline, Lemaitre, Aristide, Leung, P. T., Roussignol, Philippe, Binder, Rolf, Tignon, Jerome, Schumacher, Stefan

    Published in Scientific reports (22-10-2013)
    “…Nonequilibrium patterns in open systems are ubiquitous in nature, with examples as diverse as desert sand dunes, animal coat patterns such as zebra stripes, or…”
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    Journal Article
  5. 5

    Electromagnetically induced transparency in semiconductors via biexciton coherence by Phillips, Mark C, Wang, Hailin, Rumyantsev, I, Kwong, N H, Takayama, R, Binder, R

    Published in Physical review letters (31-10-2003)
    “…We report an experimental demonstration and theoretical analysis of electromagnetically induced transparency in a GaAs quantum well, in which the absorption of…”
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    Journal Article
  6. 6

    A population-competition model for analyzing transverse optical patterns including optical control and structural anisotropy by Tse, Y C, Chan, Chris K P, Luk, M H, Kwong, N H, Leung, P T, Binder, R, Schumacher, Stefan

    Published in New journal of physics (27-08-2015)
    “…We present a detailed study of a low-dimensional population-competition (PC) model suitable for analysis of the dynamics of certain modulational instability…”
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  7. 7

    Transverse optical patterns for ultra-low-light-level all-optical switching by Dawes, A.M.C., Gauthier, D.J., Schumacher, S., Kwong, N.H., Binder, R., Smirl, A.L.

    Published in Laser & photonics reviews (01-02-2010)
    “…We review recent theoretical and experimental efforts toward developing an all‐optical switch based on transverse optical patterns. Transverse optical patterns…”
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    Journal Article
  8. 8

    Low intensity directional switching of light in semiconductor microcavities by Schumacher, Stefan, Kwong, N. H., Binder, R., Smirl, Arthur L.

    “…Recently it was demonstrated that in atomic vapors weak control beams can manipulate (or switch) the propagation direction of strong light beams [Dawes et al.,…”
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    Journal Article
  9. 9

    Large optical gain from four-wave mixing instabilities in semiconductor quantum wells by Schumacher, S, Kwong, N. H, Binder, R

    Published in Europhysics letters (01-01-2008)
    “…Based on a microscopic many-particle theory, we predict large optical gain in the probe and background-free four-wave mixing directions caused by excitonic…”
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    Journal Article
  10. 10

    Directional optical switching and transistor functionality using optical parametric oscillation in a spinor polariton fluid by Lewandowski, Przemyslaw, Luk, Samuel M H, Chan, Chris K P, Leung, P T, Kwong, N H, Binder, Rolf, Schumacher, Stefan

    Published in Optics express (11-12-2017)
    “…Over the past decade, spontaneously emerging patterns in the density of polaritons in semiconductor microcavities were found to be a promising candidate for…”
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    Journal Article
  11. 11

    Optical instabilities in semiconductor quantum-well systems driven by phase-space filling by Schumacher, Stefan, Kwong, N. H., Binder, R., Smirl, Arthur L.

    Published in Physica Status Solidi (b) (01-02-2009)
    “…Four‐wave mixing (FWM) is one of the best known phenomena in semiconductor optics. Recent experimental results of FWM instabilities and optical switching in…”
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    Journal Article
  12. 12

    Theory of laser cooling of semiconductor quantum wells by Rupper, G., Kwong, N. H., Gu, B., Binder, R.

    Published in Physica Status Solidi (b) (01-06-2008)
    “…We present a microscopic many‐body theory of laser cooling of semiconductor quantum wells. The cooling mechanism is the upconversion of pump photons through…”
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    Journal Article
  13. 13

    Controlling the optical spin Hall effect with light by Lafont, O., Luk, S. M. H., Lewandowski, P., Kwong, N. H., Leung, P. T., Galopin, E., Lemaitre, A., Tignon, J., Schumacher, S., Baudin, E., Binder, R.

    Published in Applied physics letters (06-02-2017)
    “…The optical spin Hall effect is a transport phenomenon of exciton polaritons in semiconductor microcavities, caused by the polaritonic spin-orbit interaction,…”
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    Journal Article
  14. 14

    Transverse optical instability patterns in semiconductor microcavities: Polariton scattering and low-intensity all-optical switching by Luk, M. H., Tse, Y. C., Kwong, N. H., Leung, P. T., Lewandowski, Przemyslaw, Binder, R., Schumacher, Stefan

    “…We present a detailed theoretical study of transverse exciton-polariton patterns in semiconductor quantum well micro-cavities. These patterns are initiated by…”
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    Journal Article
  15. 15

    Large excitonic enhancement of optical refrigeration in semiconductors by Rupper, G, Kwong, N H, Binder, R

    Published in Physical review letters (15-09-2006)
    “…We present a theoretical analysis for laser cooling of bulk GaAs based on a microscopic many-particle theory of absorption and luminescence of a partially…”
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    Journal Article
  16. 16

    Ultrafast coherent dynamics of optically inactive excitons in semiconductors by Yang, Z. S, Kwong, N. H, Takayama, R, Binder, R

    Published in Europhysics letters (01-02-2005)
    “…The center-of-mass momentum distribution of optically created excitons in semiconductors is known to be constrained by the (very small) light momenta at times…”
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    Journal Article
  17. 17

    Light pulse delay in semiconductor quantum well Bragg structures by Binder, R., Yang, Z. S., Kwong, N. H., Nguyen, D. T., Smirl, Arthur L.

    Published in Physica Status Solidi (b) (01-08-2006)
    “…We discuss a scheme for controlled stopping, storing, and releasing of light pulses in one‐dimensional resonant photonic band gap structures (RPBG's) made of…”
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    Journal Article Conference Proceeding
  18. 18

    A Fortran code for solving the Kadanoff–Baym equations for a homogeneous fermion system by Köhler, H.S., Kwong, N.H., Yousif, Hashim A.

    Published in Computer physics communications (01-12-1999)
    “…A Fortran code for solving the Kadanoff–Baym equations for a homogeneous fermion system is presented. These are a class of quantum kinetic equations the…”
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  19. 19

    Optical switching of polariton density patterns in a semiconductor microcavity by Kwong, N H, Tsang, C Y, Luk, Samuel M H, Tse, Y C, Chan, Chris K P, Lewandowski, P, Leung, P T, Schumacher, Stefan, Binder, R

    Published in Physica scripta (01-03-2017)
    “…Phase-conjugate scattering can trigger modulational instabilities in a fluid of exciton-polaritons created in a pumped semiconductor quantum-well microcavity…”
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    Journal Article
  20. 20

    Evidence for intervalence band coherences in semiconductor quantum wells via coherently coupled optical Stark shifts by Donovan, M E, Schülzgen, A, Lee, J, Blanche, P A, Peyghambarian, N, Khitrova, G, Gibbs, H M, Rumyantsev, I, Kwong, N H, Takayama, R, Yang, Z S, Binder, R

    Published in Physical review letters (03-12-2001)
    “…We report the experimental observation of coherently coupled heavy-hole-light-hole Stark shifts, i.e., light-hole exciton shifts under heavy-hole exciton…”
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