@article{13919,
  author       = {{Sternemann, E. and Jostmeier, T. and Ruppert, C. and Thunich, S. and Duc, H. T. and Podzimski, R. and Meier, Torsten and Betz, M.}},
  issn         = {{0946-2171}},
  journal      = {{Applied Physics B}},
  title        = {{{Quantum interference control of electrical currents in GaAs microstructures: physics and spectroscopic applications}}},
  doi          = {{10.1007/s00340-015-6310-y}},
  volume       = {{122}},
  year         = {{2016}},
}

@article{4246,
  abstract     = {{Spins in semiconductor quantum dots have been considered as prospective quantum bit excitations. Their coupling to the crystal environment manifests itself in a limitation of the spin coherence times to the microsecond range, both for electron and hole spins. This rather short-lived coherence compared to atomic states asks for manipulations on timescales as short as possible. Due to the huge dipole moment for transitions between the valence and conduction band, pulsed laser systems offer the possibility to perform manipulations within picoseconds or even faster. Here, we report on results that show the potential of optical spin manipulations with currently available pulsed laser systems. Using picosecond laser pulses, we demonstrate optically induced spin rotations of electron and hole spins. We further realize the optical decoupling of the hole spins from the nuclear surrounding at the nanosecond timescales and demonstrate an all-optical spin tomography for interacting electron spin sub-ensembles.}},
  author       = {{Varwig, S. and Evers, E. and Greilich, A. and Yakovlev, D. R. and Reuter, Dirk and Wieck, A. D. and Meier, Torsten and Zrenner, Artur and Bayer, M.}},
  issn         = {{0946-2171}},
  journal      = {{Applied Physics B}},
  keywords     = {{Spin Polarization, Pump Pulse, Trion, Spin Component, Coherence Time}},
  number       = {{1}},
  publisher    = {{Springer Nature}},
  title        = {{{Advanced optical manipulation of carrier spins in (In,Ga)As quantum dots}}},
  doi          = {{10.1007/s00340-015-6274-y}},
  volume       = {{122}},
  year         = {{2016}},
}

@article{43194,
  abstract     = {{For incident light polarized perpendicular to the tube axis the multi-band semiconductor Bloch equations (MB-SBEs) that involve various screened interband Coulomb interactions (ICIs) are derived. The calculated E 12 peak is very close to the longitudinal excitonic peak E 22. Compared with the previous theoretical peak positions, the blue-shift of the peak in our results is about 0.5 eV. Then, subsequent detailed analyses show that the screening effect on the diagonal ICIs (D-ICIs) plays a key role in this big blue-shift. The valley-degenerate transverse pair excitations holding the same selection rule further enhance the screening effect on D-ICIs. Specially at q = 0 the dielectric function acting on the D-ICIs enhances two times. In our calculation the strong screening effect contributes 90% of the big blue-shift, while the non-diagonal ICIs (ND-ICIs) contribute to 10% of the blue-shift.}},
  author       = {{Meier, Torsten and Liu, Hong}},
  journal      = {{The European Physical Journal B}},
  title        = {{{Influence of strong screening effect on the perpendicular polarized linear excitonic absorption spectra of semiconducting carbon nanotubes}}},
  doi          = {{10.1140/epjb/e2016-70476-8}},
  volume       = {{89}},
  year         = {{2016}},
}

@article{43196,
  abstract     = {{A method is presented to transfer a system of two-level atoms from a spin coherent state to a maximally spin squeezed Dicke state, relevant for quantum metrology and quantum information processing. The initial state is the ground state of an initial linear Hamiltonian that is gradually turned into a final quadratic Hamiltonian whose ground state is the selected Dicke state. We use compensating operators to suppress diabatic transitions to unwanted states that would occur if the change were not slow. We discuss the possibilities of constructing the compensating operators by sequential application of quadratic Hamiltonians available in experiments.}},
  author       = {{Meier, Torsten and Opatrný, T. and Saberi, H. and Brion, E. and Mølmer, K.}},
  journal      = {{Physical Review A}},
  number       = {{2}},
  title        = {{{Counterdiabatic driving in spin squeezing and Dicke-state preparation}}},
  doi          = {{10.1103/PhysRevA.93.023815}},
  volume       = {{93}},
  year         = {{2016}},
}

@article{43195,
  abstract     = {{We propose an entanglement classification for symmetric quantum states based on their diagonal matrix-product-state (MPS) representation. The proposed classification, which preserves the stochastic local operation assisted with classical communication (SLOCC) criterion, relates entanglement families to the interaction length of Hamiltonians. In this manner, we establish a connection between entanglement classification and condensed matter models from a quantum information perspective. Moreover, we introduce a scalable nesting property for the proposed entanglement classification, in which the families for N parties carry over to the N + 1 case. Finally, using techniques from algebraic geometry, we prove that the minimal nontrivial interaction length n for any symmetric state is bounded by .}},
  author       = {{Sanz, M. and Egusquiza, I.L. and Candia, R. Di and Saberi, H. and Lamata, L. and Solano, E.}},
  journal      = {{Scientific Reports}},
  title        = {{{Entanglement classification with matrix product states}}},
  doi          = {{10.1038/srep30188}},
  volume       = {{6}},
  year         = {{2016}},
}

@article{1454,
  author       = {{Grynko, Yevgen and Zentgraf, Thomas and Meier, Torsten and Förstner, Jens}},
  issn         = {{0946-2171}},
  journal      = {{Applied Physics B}},
  keywords     = {{tet_topic_meta, tet_topic_shg}},
  number       = {{9}},
  pages        = {{242}},
  publisher    = {{Springer Nature}},
  title        = {{{Simulations of high harmonic generation from plasmonic nanoparticles in the terahertz region}}},
  doi          = {{10.1007/s00340-016-6510-0}},
  volume       = {{122}},
  year         = {{2016}},
}

@article{1456,
  author       = {{Ye, Weimin and Zeuner, Franziska and Li, Xin and Reineke, Bernhard and He, Shan and Qiu, Cheng-Wei and Liu, Juan and Wang, Yongtian and Zhang, Shuang and Zentgraf, Thomas}},
  issn         = {{2041-1723}},
  journal      = {{Nature Communications}},
  publisher    = {{Springer Nature}},
  title        = {{{Spin and wavelength multiplexed nonlinear metasurface holography}}},
  doi          = {{10.1038/ncomms11930}},
  volume       = {{7}},
  year         = {{2016}},
}

@article{1459,
  author       = {{Chen, Shumei and Zeuner, Franziska and Weismann, Martin and Reineke, Bernhard and Li, Guixin and Valev, Ventsislav Kolev and Cheah, Kok Wai and Panoiu, Nicolae Coriolan and Zentgraf, Thomas and Zhang, Shuang}},
  issn         = {{0935-9648}},
  journal      = {{Advanced Materials}},
  number       = {{15}},
  pages        = {{2992--2999}},
  publisher    = {{Wiley-Blackwell}},
  title        = {{{Giant Nonlinear Optical Activity of Achiral Origin in Planar Metasurfaces with Quadratic and Cubic Nonlinearities}}},
  doi          = {{10.1002/adma.201505640}},
  volume       = {{28}},
  year         = {{2016}},
}

@article{1457,
  author       = {{Li, Guixin and Zentgraf, Thomas and Zhang, Shuang}},
  issn         = {{1745-2473}},
  journal      = {{Nature Physics}},
  number       = {{8}},
  pages        = {{736--740}},
  publisher    = {{Springer Nature}},
  title        = {{{Rotational Doppler effect in nonlinear optics}}},
  doi          = {{10.1038/nphys3699}},
  volume       = {{12}},
  year         = {{2016}},
}

@article{1458,
  author       = {{Probst, Heike and Zentgraf, Thomas}},
  issn         = {{0031-9252}},
  journal      = {{Physik in unserer Zeit}},
  number       = {{2}},
  pages        = {{84--89}},
  publisher    = {{Wiley-Blackwell}},
  title        = {{{Designermaterialien für nichtlineare Optik}}},
  doi          = {{10.1002/piuz.201601427}},
  volume       = {{47}},
  year         = {{2016}},
}

@article{22809,
  author       = {{Rai, Ashish K. and Gordon, Simon and Ludwig, Arne and Wieck, Andreas D. and Zrenner, Artur and Reuter, Dirk}},
  issn         = {{0370-1972}},
  journal      = {{physica status solidi (b)}},
  pages        = {{437--441}},
  title        = {{{Spatially indirect transitions in electric field tunable quantum dot diodes}}},
  doi          = {{10.1002/pssb.201552591}},
  year         = {{2015}},
}

@article{7217,
  author       = {{Jostmeier, Thorben and Wecker, Tobias and Reuter, Dirk and As, Donat Josef and Betz, Markus}},
  issn         = {{0003-6951}},
  journal      = {{Applied Physics Letters}},
  number       = {{21}},
  publisher    = {{AIP Publishing}},
  title        = {{{Ultrafast carrier dynamics and resonant inter-miniband nonlinearity of a cubic GaN/AlN superlattice}}},
  doi          = {{10.1063/1.4936330}},
  volume       = {{107}},
  year         = {{2015}},
}

@article{7218,
  author       = {{Debus, J. and Kudlacik, D. and Sapega, V. F. and Dunker, D. and Bohn, P. and Paßmann, F. and Braukmann, D. and Rautert, J. and Yakovlev, D. R. and Reuter, Dirk and Wieck, A. D. and Bayer, M.}},
  issn         = {{1098-0121}},
  journal      = {{Physical Review B}},
  number       = {{19}},
  publisher    = {{American Physical Society (APS)}},
  title        = {{{Nuclear spin polarization in the electron spin-flip Raman scattering of singly charged (In,Ga)As/GaAs quantum dots}}},
  doi          = {{10.1103/physrevb.92.195421}},
  volume       = {{92}},
  year         = {{2015}},
}

@article{7219,
  author       = {{Kuhlmann, Andreas V. and Prechtel, Jonathan H. and Houel, Julien and Ludwig, Arne and Reuter, Dirk and Wieck, Andreas D. and Warburton, Richard J.}},
  issn         = {{2041-1723}},
  journal      = {{Nature Communications}},
  number       = {{1}},
  publisher    = {{Springer Nature}},
  title        = {{{Transform-limited single photons from a single quantum dot}}},
  doi          = {{10.1038/ncomms9204}},
  volume       = {{6}},
  year         = {{2015}},
}

@article{7220,
  author       = {{Mehta, M. and Reuter, Dirk and Kamruddin, M. and Tyagi, A. K. and Wieck, A. D.}},
  issn         = {{1793-2920}},
  journal      = {{Nano}},
  number       = {{04}},
  publisher    = {{World Scientific Pub Co Pte Lt}},
  title        = {{{Influence of Post-Implantation Annealing Parameters on the Focused Ion Beam Directed Nucleation of InAs Quantum Dots}}},
  doi          = {{10.1142/s1793292015500496}},
  volume       = {{10}},
  year         = {{2015}},
}

@article{7221,
  author       = {{Chen, J. C. H. and Klochan, O. and Micolich, A. P. and Das Gupta, K. and Sfigakis, F. and Ritchie, D. A. and Trunov, K. and Reuter, Dirk and Wieck, A. D. and Hamilton, A. R.}},
  issn         = {{0003-6951}},
  journal      = {{Applied Physics Letters}},
  number       = {{18}},
  publisher    = {{AIP Publishing}},
  title        = {{{Fabrication and characterisation of gallium arsenide ambipolar quantum point contacts}}},
  doi          = {{10.1063/1.4918934}},
  volume       = {{106}},
  year         = {{2015}},
}

@article{7222,
  author       = {{Finke, A. and Ruth, M. and Scholz, S. and Ludwig, A. and Wieck, A. D. and Reuter, Dirk and Pawlis, A.}},
  issn         = {{1098-0121}},
  journal      = {{Physical Review B}},
  number       = {{3}},
  publisher    = {{American Physical Society (APS)}},
  title        = {{{Extending the spectral range of CdSe/ZnSe quantum wells by strain engineering}}},
  doi          = {{10.1103/physrevb.91.035409}},
  volume       = {{91}},
  year         = {{2015}},
}

@article{4276,
  abstract     = {{We analyse an InAs/GaAs-based electric ﬁeld tunable single quantum dot diode with a thin tunnelling barrier between a
buried n þ -back contact and a quantum dot layer. In voltage- dependent photoluminescence measurements, we observe rich signatures from spatially direct and indirect transitions from the wetting layer and from a single quantum dot. By analysing the Stark effect, we show that the indirect transitions result from a recombination between conﬁned holes in the wetting or quantum dot layer with electrons from the edge of the Fermi sea in the back contact. Using a 17 nm tunnel barrier which provides comparably weak tunnel coupling allowed us to observe clear signatures of direct and corresponding indirect lines for a series of neutral and positively charged quantum dot states.}},
  author       = {{Rai, Ashish K. and Gordon, Simon and Ludwig, Arne and Wieck, Andreas D. and Zrenner, Artur and Reuter, Dirk}},
  issn         = {{0370-1972}},
  journal      = {{physica status solidi (b)}},
  keywords     = {{excitons, GaAs, InAs, quantum dots, spatially indirect transitions, Stark shift}},
  number       = {{3}},
  pages        = {{437--441}},
  publisher    = {{Wiley}},
  title        = {{{Spatially indirect transitions in electric field tunable quantum dot diodes}}},
  doi          = {{10.1002/pssb.201552591}},
  volume       = {{253}},
  year         = {{2015}},
}

@article{4331,
  abstract     = {{We report about the fabrication and analysis of high Q photonic crystal cavities with metallic
Schottky-contacts. The structures are based on GaAs n-i membranes with an InGaAs quantum well
in the i-region and nanostructured low ohmic metal top-gates. They are designed for photocurrent
readout within the cavity and fast electric manipulations. The cavity structures are characterized by
photoluminescence and photocurrent spectroscopy under resonant excitation. We find strong cavity
resonances in the photocurrent spectra and surprisingly high Q-factors up to 6500. Temperature dependent
photocurrent measurements in the region between 4.5K and 310K show an exponential
enhancement of the photocurrent signal and an external quantum efficiency up to 0.26.}},
  author       = {{Quiring, W. and Al-Hmoud, M. and Rai, A. and Reuter, Dirk and Wieck, A. D. and Zrenner, Artur}},
  issn         = {{0003-6951}},
  journal      = {{Applied Physics Letters}},
  number       = {{4}},
  publisher    = {{AIP Publishing}},
  title        = {{{Photonic crystal cavities with metallic Schottky contacts}}},
  doi          = {{10.1063/1.4928038}},
  volume       = {{107}},
  year         = {{2015}},
}

@article{6520,
  abstract     = {{We investigate the response of a polariton laser driven slightly off-resonantly using light fields differing from the routinely studied coherent pump sources. The response to driving light fields with thermal and displaced thermal statistics with varying correlation times shows significant differences in the transmitted intensity, its noise, and the position of the nonlinear threshold. We predict that adding more photons on average may actually reduce the transmission through the polariton system.}},
  author       = {{Assmann, Marc and Bayer, Manfred}},
  issn         = {{1050-2947}},
  journal      = {{PHYSICAL REVIEW A}},
  number       = {{5}},
  title        = {{{Stochastic pumping of a polariton fluid}}},
  doi          = {{10.1103/PhysRevA.91.053835}},
  volume       = {{91}},
  year         = {{2015}},
}

