A chiral one-dimensional atom using a quantum dot in an open microcavity
暂无分享,去创建一个
A. Wieck | R. Warburton | A. Ludwig | T. Jakubczyk | A. Javadi | R. Schott | S. Valentin | N. Tomm | N. Antoniadis
[1] V. Sandoghdar,et al. Single-Molecule Vacuum Rabi Splitting: Four-Wave Mixing and Optical Switching at the Single-Photon Level. , 2021, Physical review letters.
[2] A. Wieck,et al. Tuning the Mode Splitting of a Semiconductor Microcavity with Uniaxial Stress , 2021, 2102.09327.
[3] A. Wieck,et al. A bright and fast source of coherent single photons , 2020, Nature Nanotechnology.
[4] A. Sørensen,et al. Dynamics of Many-Body Photon Bound States in Chiral Waveguide QED , 2019, Physical Review X.
[5] Pavel Sekatski,et al. A gated quantum dot strongly coupled to an optical microcavity , 2019, Nature.
[6] V. Sandoghdar,et al. Turning a molecule into a coherent two-level quantum system , 2018, Nature Physics.
[7] D. Bouwmeester,et al. Electro-optic polarization tuning of microcavities with a single quantum dot. , 2018, Optics letters.
[8] M. N. Makhonin,et al. Nonreciprocal Transmission and Reflection of a Chirally Coupled Quantum Dot. , 2018, Nano letters.
[9] A. Wieck,et al. Spin–photon interface and spin-controlled photon switching in a nanobeam waveguide , 2017, Nature Nanotechnology.
[10] J. Taylor,et al. Efimov States of Strongly Interacting Photons. , 2017, Physical review letters.
[11] Jürgen Volz,et al. Quantum optical circulator controlled by a single chirally coupled atom , 2016, Science.
[12] Peter Zoller,et al. Chiral quantum optics , 2016, Nature.
[13] Changsuk Noh,et al. Quantum simulations and many-body physics with light , 2016, Reports on progress in physics. Physical Society.
[14] D. Bouwmeester,et al. Purification of a single-photon nonlinearity , 2016, Nature Communications.
[15] Jürgen Volz,et al. Nanophotonic Optical Isolator Controlled by the Internal State of Cold Atoms , 2015 .
[16] M. S. Skolnick,et al. Chirality of nanophotonic waveguide with embedded quantum emitter for unidirectional spin transfer , 2015, Nature Communications.
[17] M. Lukin,et al. Coulomb Bound States of Strongly Interacting Photons. , 2015, Physical review letters.
[18] T. Ralph,et al. Photon sorting, efficient bell measurements, and a deterministic controlled-Z gate using a passive two-level nonlinearity. , 2015, Physical review letters.
[19] Jin Dong Song,et al. Deterministic photon-emitter coupling in chiral photonic circuits. , 2014, Nature nanotechnology.
[20] Serge Rosenblum,et al. All-optical routing of single photons by a one-atom switch controlled by a single photon , 2014, Science.
[21] J. D. Thompson,et al. Nanophotonic quantum phase switch with a single atom , 2014, Nature.
[22] A. Rauschenbeutel,et al. Fiber-optical switch controlled by a single atom. , 2013, Physical review letters.
[23] A. Wieck,et al. Charge noise and spin noise in a semiconductor quantum device , 2013, Nature Physics.
[24] Mohammad Hafezi,et al. Non-equilibrium fractional quantum Hall state of light , 2013, 1301.1344.
[25] M. Lukin,et al. Photon sorters and QND detectors using single photon emitters , 2010, 1007.3273.
[26] Shanhui Fan,et al. Theory of single-photon transport in a single-mode waveguide. I. Coupling to a cavity containing a two-level atom , 2009, 0901.3938.
[27] D. E. Chang,et al. A single-photon transistor using nanoscale surface plasmons , 2007, 0706.4335.
[28] C. Simon,et al. Giant optical nonlinearity induced by a single two-level system interacting with a cavity in the Purcell regime , 2006, quant-ph/0610172.
[29] H. Carmichael,et al. Single-atom cavity-enhanced absorption. I. Photon statistics in the bad-cavity limit , 1988 .