@inproceedings{4180,
  abstract     = {{We show that an optically driven carrier spin undergoes indirect dephasing even in the absence of spin-reservoir coupling and illustrate it for phonon-induced decoherence during optical spin rotation in a single quantum dot.}},
  author       = {{Grodecka, Anna and Machnikowski, Pawel and Förstner, Jens}},
  booktitle    = {{Advances in Optical Sciences Congress}},
  isbn         = {{9781557528735}},
  keywords     = {{tet_topic_qd}},
  publisher    = {{OSA Technical Digest (CD) (Optical Society of America, 2009)}},
  title        = {{{Indirect Dephasing Channel for Optically Controlled Spin in a Single Quantum Dot}}},
  doi          = {{10.1364/nlo.2009.nma1}},
  year         = {{2009}},
}

@article{4182,
  abstract     = {{We demonstrate that an optically driven spin of a carrier in a quantum dot undergoes indirect dephasing via
conditional optically induced charge evolution even in the absence of any direct interaction between the spin
and its environment. A generic model for the indirect dephasing with a three-component system with spin,
charge, and reservoir is proposed. This indirect decoherence channel is studied for the optical spin manipulation
in a quantum dot with a microscopic description of the charge-phonon interaction taking into account its
non-Markovian nature.}},
  author       = {{Grodecka, A. and Machnikowski, P. and Förstner, Jens}},
  issn         = {{1050-2947}},
  journal      = {{Physical Review A}},
  keywords     = {{tet_topic_qd}},
  number       = {{4}},
  publisher    = {{American Physical Society (APS)}},
  title        = {{{Indirect spin dephasing via charge-state decoherence in optical control schemes in quantum dots}}},
  doi          = {{10.1103/physreva.79.042331}},
  volume       = {{79}},
  year         = {{2009}},
}

@article{4187,
  abstract     = {{We study phonon-assisted electron tunneling in semiconductor quantum dot molecules. In particular, singletsinglet
relaxation in a two-electron-doped structure is considered. The influence of Coulomb interaction is
discussed via comparison with a single-electron system. We find that the relaxation rate reaches similar values
in the two cases but the Coulomb interaction shifts the maximum rates toward larger separations between the
dots. The difference in electron-phonon interaction between deformation potential and piezoelectric coupling is
investigated. We show that the phonon-induced tunneling between two-electron singlet states is a fast process,
taking place on the time scales of the order of a few tens of picoseconds.}},
  author       = {{Grodecka, A. and Machnikowski, P. and Förstner, Jens}},
  issn         = {{1098-0121}},
  journal      = {{Physical Review B}},
  keywords     = {{tet_topic_qd}},
  number       = {{8}},
  publisher    = {{American Physical Society (APS)}},
  title        = {{{Phonon-assisted tunneling between singlet states in two-electron quantum dot molecules}}},
  doi          = {{10.1103/physrevb.78.085302}},
  volume       = {{78}},
  year         = {{2008}},
}

@article{4317,
  abstract     = {{Phonon-assisted singlet-singlet relaxation in semiconductor quantum dot molecules is studied theoretically. Laterally coupled quantum dot structures doped with two electrons are considered. We take into account interaction with acoustic phonon modes via deformation potential and piezoelectric coupling. We show that piezoelectric mechanism for the considered system is of great importance and for some ranges of quantum dot molecule parameters is the dominant contribution to relaxation. It is shown that the phonon-assisted tunneling is much faster (down to ∼ 6 ps even at zero temperature) in comparison with other decoherence processes. The influence of Coulomb interaction is discussed and its consequences are indicated. We calculate the relaxation rates for GaAs quantum dot molecules and study the dependence on quantum dot size, distance and offset between the constituent quantum dots. In addition the temperature dependence of the tunneling rates is analyzed.}},
  author       = {{Grodecka, Anna and Machnikowski, Paweł and Förstner, Jens}},
  issn         = {{1610-1634}},
  journal      = {{physica status solidi (c)}},
  keywords     = {{tet_topic_qd}},
  number       = {{2}},
  pages        = {{474--478}},
  publisher    = {{Wiley}},
  title        = {{{Theoretical study of phononassisted singlet-singlet relaxation in two-electron semiconductor quantum dot molecules}}},
  doi          = {{10.1002/pssc.200880319}},
  volume       = {{6}},
  year         = {{2008}},
}

@article{4189,
  abstract     = {{We theoretically study the biexciton-phonon interaction in strongly confined semiconductor quantum dots. For spectrally narrow single-pulse excitation generation of biexcitonic occupations is only possible via a two-photon cascade, which exhibits renormalized Rabi oscillations and spectrally compressed phononsidebands.}},
  author       = {{Förstner, Jens and Knorr, A. and Moloney, J. V.}},
  issn         = {{1610-1634}},
  journal      = {{physica status solidi (c)}},
  keywords     = {{tet_topic_qd}},
  number       = {{7}},
  pages        = {{2389--2392}},
  publisher    = {{Wiley}},
  title        = {{{Interplay of electron-phonon and Coulomb interaction in semiconductor quantum dots}}},
  doi          = {{10.1002/pssc.200668111}},
  volume       = {{3}},
  year         = {{2006}},
}

@article{4243,
  abstract     = {{We investigate the optical properties of a Coulomb-coupled double-quantum dot system excited by coherent light pulses. Basic effects of Coulomb coupling regarding linear and nonlinear optical processes are discussed. By numerically solving the Heisenberg equation of motion we are able to present the temporal evolution of the system’s density matrix for a wide range of coupling parameters. The two main coupling effects in dipole approximation, biexcitonic shift and Förster energy transfer, are investigated and their qualitative and quantitative influence on absorption spectra, Rabi oscillations, and single- and two-pulse excitation is discussed. We present simulated differential transmission spectra to allow for comparison with recent experimental studies.}},
  author       = {{Danckwerts, J. and Ahn, K. J. and Förstner, Jens and Knorr, A.}},
  issn         = {{1098-0121}},
  journal      = {{Physical Review B}},
  keywords     = {{tet_topic_qd}},
  number       = {{16}},
  pages        = {{165318--165318--18}},
  publisher    = {{American Physical Society (APS)}},
  title        = {{{Theory of ultrafast nonlinear optics of Coulomb-coupled semiconductor quantum dots: Rabi oscillations and pump-probe spectra}}},
  doi          = {{10.1103/physrevb.73.165318}},
  volume       = {{73}},
  year         = {{2006}},
}

@inproceedings{4251,
  abstract     = {{A system of two quantum dots coupled by dipole‐dipole interaction is investigated within a density matrix approach. We compute the temporal evolution of the system in the linear and nonlinear optical regime and discuss the possibility of performing basic quantum information gates. The influence of the Förster energy transfer on Rabi oscillations is discussed.}},
  author       = {{Danckwerts, J. and Förstner, Jens and Knorr, A.}},
  booktitle    = {{AIP Conference Proceedings}},
  issn         = {{0094-243X}},
  keywords     = {{tet_topic_qd}},
  publisher    = {{AIP}},
  title        = {{{Quantum information processing using Coulomb-coupled quantum dots}}},
  doi          = {{10.1063/1.1994668}},
  volume       = {{772}},
  year         = {{2005}},
}

@article{4260,
  abstract     = {{Using a fully quantized description of strongly confined electrons interacting with acoustic phonons and the
photon field, the nonstationary resonance-fluorescence spectra of a semiconductor quantum dot are investigated.
For excitation pulses with durations approaching typical electron-phonon scattering times, the virtual
quantum processes yield an observable electron-phonon sideband broadening.}},
  author       = {{Ahn, K. J. and Förstner, Jens and Knorr, A.}},
  issn         = {{1098-0121}},
  journal      = {{Physical Review B}},
  keywords     = {{tet_topic_qd}},
  number       = {{15}},
  publisher    = {{American Physical Society (APS)}},
  title        = {{{Resonance fluorescence of semiconductor quantum dots: Signatures of the electron-phonon interaction}}},
  doi          = {{10.1103/physrevb.71.153309}},
  volume       = {{71}},
  year         = {{2005}},
}

@article{4264,
  abstract     = {{We demonstrate that the temporal pulse phase remains essentially unaltered before separate phase
characteristics are developed when propagating high-intensity pulses coherently on the exciton resonance
of an optically thick semiconductor. This behavior is a clear manifestation of self-induced transmission
and pulse breakup into solitonlike pulses due to Rabi flopping of the carrier density. Experiments using a
novel fast-scan cross-correlation frequency-resolved optical gating (XFROG) method are in good
agreement with numerical calculations based on the semiconductor Bloch equations.}},
  author       = {{Nielsen, N. C. and zu Siederdissen, T. Höner and Kuhl, J. and Schaarschmidt, M. and Förstner, Jens and Knorr, A. and Giessen, H.}},
  issn         = {{0031-9007}},
  journal      = {{Physical Review Letters}},
  keywords     = {{tet_topic_qd}},
  number       = {{5}},
  publisher    = {{American Physical Society (APS)}},
  title        = {{{Phase Evolution of Solitonlike Optical Pulses during Excitonic Rabi Flopping in a Semiconductor}}},
  doi          = {{10.1103/physrevlett.94.057406}},
  volume       = {{94}},
  year         = {{2005}},
}

@inproceedings{4280,
  abstract     = {{Theoretically and experimentally, we investigate temporal phase evolution during Rabi-flopping on the A-exciton resonance in CdSe using a novel fast-scanning XFROG method and observe phase changes smaller than π/2 compared to the slightly-chirped input pulse.}},
  author       = {{Höner zu Siederdissen, Tilman and Nielsen, Nils Christian. and Kuhl, Jürgen and Förstner, Jens and Knorr, Andreas and Giessen, Harald}},
  booktitle    = {{International Quantum Electronics Conference and Photonic Applications Systems Technologies}},
  isbn         = {{1-55752-770-9}},
  keywords     = {{tet_topic_qd}},
  location     = {{San Francisco, California (USA)}},
  publisher    = {{OSA}},
  title        = {{{Temporal phase evolution during excitonic Rabi flopping in semiconductors}}},
  doi          = {{10.1364/iqec.2004.imb3}},
  year         = {{2004}},
}

@phdthesis{4319,
  abstract     = {{In dieser Arbeit wird eine Theorie vorgestellt, welche die quantenmechanische Vielteilchenphysik
der Licht-Materie Wechselwirkung in Halbleiternanostrukturen beschreibt. Diese mikroskopische Beschreibung
wird durch Kombination eines allgemeinen Dichtematrixansatzes mit speziellen Methoden
zur Auswertung der Maxwellgleichungen wie der zeitaufgelösten Finite-Differenzen-Methode
(FDTD) erreicht. Die Theorie wird auf verschiedene physikalische Situationen angewendet, wie z.B.
Lichtausbreitung in Volumenhalbleitern, Interband- und Intersubbandübergänge in Quantenfilmstrukturen
und optische Anregung von Quantenpunkten. Der Fokus liegt dabei auf der Beschreibung der
linearen und nichtlinearen Antwort des Vielteilchensystems und seiner Ankopplung an das elektromagnetische
Feld. In diesem Zusammenhang wird sowohl die Erzeugung als auch der Zerfall von optischen
Anregungen untersucht, indem verschiedene Kopplungsmechanismen wie Elektron-Phonon-,
Elektron-Photon- und Elektron-Elektron-Wechselwirkung berücksichtigt werden.
Im Bereich der linearen Optik, also für Anregung mit geringer Intensität, ermöglicht die Theorie
die Berechnung von Absorptionsspektren. Verschiedene Effekte in linearer Optik werden in dieser
Arbeit untersucht und beschrieben: Linienaufspaltung durch Polaritonen im Volumenmaterial, Zunahme
der Linienbreite bei Intersubbandübergängen verursacht durch Elektron-Elektron- und Elektron-
Phonon-Streuung in einzelnen Quantenfilmen, Bildung einer optischen Bandlücke durch starke radiative
Kopplung in Vielfilmstrukturen in Bragg-Geometrie, Phononenseitenbänder verursacht durch
quantenkinetische Effekte in einzelnen Quantenpunkten und schliesslich Superradianz und Interferenzeffekte
in Quantenpunktgittern.
Bei nichtlinearer Anregung treten Dichte-Rabiflops als fundamentale Prozesse in allen betrachteten
Systemen auf und können als kohärente Be- und Entvölkerung von quantenmechanischen Zuständen
beobachtet werden. Der Einfluss von starker Lichtkopplung und verschiedenen Wechselwirkungen
auf dynamische Größen wie die Besetzung wird untersucht. Bei nichtlinearer Propagation, bei
der sich ein starker Lichtpuls über längere Strecken in einem System bewegt, wird selbstinduzierte
Verstärkung der Transmission näher betrachtet. Des weiteren werden von der Coulombwechselwirkung
verursachte nichtlineare Effekte wie exzitoninduziertes Dephasieren in Volumenmaterial und
verschränkte Zustände in Quantenpunkten untersucht, die einen Zusammenbruch der Hartree-Fock-
Näherung darstellen.
Zusammenfassend werden in dieser Arbeit verschiedene lineare und nichtlineare optische Effekte
in Halbleiternanostrukturen verschiedener Dimensionalität mit Hilfe einer allgemeinen Theorie, die
einen Dichtematrixansatz mit den Maxwellschen Gleichungen kombiniert, untersucht.}},
  author       = {{Förstner, Jens}},
  keywords     = {{tet_topic_qd, tet_topic_qw, tet_topic_phc}},
  title        = {{{Light Propagation and Many-Particle Effects in Semiconductor Nanostructures}}},
  doi          = {{10.14279/depositonce-999}},
  year         = {{2004}},
}

@article{4288,
  abstract     = {{We report the experimental observation and the theoretical modeling of self-induced-transparency
signatures such as nonlinear transmission, pulse retardation and reshaping, for subpicosecond pulse
propagation in a 2-mm-long InGaAs quantum-dot ridge waveguide in resonance with the excitonic
ground-state transition at 10 K. The measurements were obtained by using a cross-correlation
frequency-resolved optical gating technique which allows us to retrieve the field amplitude of the
propagating pulses.}},
  author       = {{Schneider, S. and Borri, P. and Langbein, W. and Woggon, U. and Förstner, Jens and Knorr, A. and Sellin, R. L. and Ouyang, D. and Bimberg, D.}},
  issn         = {{0003-6951}},
  journal      = {{Applied Physics Letters}},
  keywords     = {{tet_topic_qd}},
  number       = {{18}},
  pages        = {{3668--3670}},
  publisher    = {{AIP Publishing}},
  title        = {{{Self-induced transparency in InGaAs quantum-dot waveguides}}},
  doi          = {{10.1063/1.1624492}},
  volume       = {{83}},
  year         = {{2003}},
}

@article{4294,
  abstract     = {{The phonon-induced dephasing dynamics of semiconductor quantum dots during nonlinear optical excitation
is studied using quantum kinetic equations. We find that despite the decoherence process Rabi
oscillations occur even for relatively long pulse durations and that their signatures in pump-probe experiments
only get suppressed for high input pulse areas.}},
  author       = {{Förstner, Jens and Weber, Carsten and Danckwerts, Juliane and Knorr, Andreas}},
  issn         = {{0370-1972}},
  journal      = {{physica status solidi (b)}},
  keywords     = {{tet_topic_qd}},
  number       = {{3}},
  pages        = {{419--422}},
  publisher    = {{Wiley}},
  title        = {{{Phonon-induced damping of Rabi oscillations in semiconductor quantum dots}}},
  doi          = {{10.1002/pssb.200303155}},
  volume       = {{238}},
  year         = {{2003}},
}

@inproceedings{4296,
  abstract     = {{A non-Markovian quantum kinetic theory of the coupled electron-phonon system in
semiconductor quantum dots is used to analyze the nonlinear dipole decoherence and light
propagation dynamics for arbitrary pulse strengths and lengths.}},
  author       = {{Förstner, Jens and Weber, C. and Danckwerts, J. and Knorr, A.}},
  booktitle    = {{Postconference Digest Quantum Electronics and Laser Science, 2003. QELS.}},
  isbn         = {{1557527490}},
  keywords     = {{tet_topic_qd}},
  location     = {{Baltimore, MD, USA, USA }},
  publisher    = {{IEEE}},
  title        = {{{Damping of electron density Rabi-oscillations and self-induced-transparency in semiconductor quantum dots}}},
  doi          = {{10.1109/qels.2003.238120}},
  year         = {{2003}},
}

@article{4322,
  abstract     = {{We present the experimental observation and the theoretical modelling of self-induced transparency
signatures such as nonlinear transmission, pulse retardation and reshaping for subpicosecond pulse propagation
in a 2 mm-long InGaAs quantum-dot ridge waveguide at 10 K. The measurements were obtained
using a cross-correlation frequency resolved optical gating technique which allows us to retrieve
the field amplitude of the propagating pulses.}},
  author       = {{Schneider, S. and Borri, P. and Langbein, W. and Woggon, U. and Förstner, Jens and Knorr, A. and Sellin, R. L. and Ouyang, D. and Bimberg, D.}},
  issn         = {{1610-1634}},
  journal      = {{physica status solidi (c)}},
  keywords     = {{tet_topic_qd}},
  number       = {{5}},
  pages        = {{1548--1551}},
  publisher    = {{Wiley}},
  title        = {{{Self-induced transparency in InGaAs quantum dot waveguides}}},
  doi          = {{10.1002/pssc.200303228}},
  year         = {{2003}},
}

@article{671,
  author       = {{Förstner, Jens and Weber, C. and Danckwerts, J. and Knorr, A.}},
  issn         = {{0031-9007}},
  journal      = {{Physical Review Letters}},
  keywords     = {{tet_topic_qd}},
  number       = {{12}},
  pages        = {{127401}},
  publisher    = {{American Physical Society (APS)}},
  title        = {{{Phonon-Assisted Damping of Rabi Oscillations in Semiconductor Quantum Dots}}},
  doi          = {{10.1103/physrevlett.91.127401}},
  volume       = {{91}},
  year         = {{2003}},
}

