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From fundamental studies of light-matter interaction to applications in quantum networking and sensing, cavity quantum electrodynamics (QED) provides a platform-crossing toolbox to control interactions between atoms and photons.
Theory of diffraction by small holes
Bethe, H. A · 1944
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On the theory of the brownian motion ii
Wang, M. C. & Uhlenbeck, G. E · 1945
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Lasers (University science books, 1986)
Siegman, A. E · 1986
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Decoherence, continuous observation, and quantum computing: A cavity qed model
Pellizzari, T., Gardiner, S. A., Cirac, J. I. & Zoller, P · 1995
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Characterization of high-finesse mirrors: Loss, phase shifts, and mode structure in an optical cavity
Hood, C. J., Kimble, H. & Ye, J · 2001
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Sub-poissonian loading of single atoms in a microscopic dipole trap
Schlosser, N., Reymond, G., Protsenko, I. & Grangier, P · 2001
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Cold collisions in a high-gradient magneto-optical trap
Ueberholz, B., Kuhr, S., Frese, D., Gomer, V. & Meschede, D · 2002
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Measurement induced entanglement and quantum computation with atoms in optical cavities
Sørensen, A. S. & Mølmer, K · 2003
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Continuous generation of single photons with controlled waveform in an ion-trap cavity system
Keller, M., Lange, B., Hayasaka, K., Lange, W. & Walther, H · 2004
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Trapped atoms in cavity QED for quantum optics and quantum information (California Institute of Technology, 2004)
McKeever, J · 2004
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Photon blockade in an optical cavity with one trapped atom
Birnbaum, K. M. et al · 2005
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Intracavity ppln crystals for ultra-low-voltage laser q-switching and high-efficiency wavelength conversion
Chen, Y., Huang, Y., Lin, Y. & Chen, Y.-F · 2005
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Mode-locked fiber laser frequency-controlled with an intracavity electro-optic modulator
Hudson, D. D. et al · 2005
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Resonator-aided single-atom detection on a microfabricated chip
Teper, I., Lin, Y.-J. & Vuletić, V · 2006
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Detecting magnetically guided atoms with an optical cavity
Haase, A., Hessmo, B. & Schmiedmayer, J · 2006
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Fully vectorial highly nonparaxial beam close to the waist
Chaumet, P. C · 2006
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Controlling cavity reflectivity with a single quantum dot
Englund, D. et al · 2007
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Photon antibunching from a single quantum-dot-microcavity system in the strong coupling regime
Press, D. et al · 2007
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The quantum internet
Kimble, H. J · 2008
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Lossless state detection of single neutral atoms
Bochmann, J. et al · 2010
Cited alongside, same era.
Implementation of cavity squeezing of a collective atomic spin
Leroux, I. D., Schleier-Smith, M. H. & Vuletić, V · 2010
Cited alongside, same era.
A fiber Fabry-Pérot cavity with high finesse
Hunger, D. et al · 2010
Cited alongside, same era.
Cavity QED with atomic ensembles (Harvard University, 2010)
Simon, J · 2010
Cited alongside, same era.
Interaction between atomic ensembles and optical resonators: Classical description
Tanji-Suzuki, H. et al · 2011
Cited alongside, same era.
An elementary quantum network of single atoms in optical cavities
Ritter, S. et al · 2012
Cited alongside, same era.
Microscopic control and detection of ultracold strontium in optical-tweezer arrays
Norcia, M., Young, A. & Kaufman, A · 2018
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Optimized cavity-mediated dispersive two-qubit gates between spin qubits
Benito, M., Petta, J. R. & Burkard, G · 2019
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A fast high-resolution time-to-digital converter implemented in a zynq 7010 soc
Adamič, M. & Trost, A · 2019
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Entanglement on an optical atomic-clock transition
Pedrozo-Peñafiel, E. et al · 2020
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Optical quantum nondemolition measurement of a single rare earth ion qubit
Raha, M. et al · 2020
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Control and single-shot readout of an ion embedded in a nanophotonic cavity
Kindem, J. M. et al · 2020
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Photon collection from a trapped ion-cavity system
Sterk, J., Luo, L., Manning, T., Maunz, P. & Monroe, C · 2012
Cited alongside, same era.
Single ion coupled to an optical fiber cavity
Steiner, M., Meyer, H. M., Deutsch, C., Reichel, J. & Köhl, M · 2013
Cited alongside, same era.
Silicon carbide photonic crystal cavities with integrated color centers
Calusine, G., Politi, A. & Awschalom, D. D · 2014
Cited alongside, same era.
Cavity-based quantum networks with single atoms and optical photons
Reiserer, A. & Rempe, G · 2015
Cited alongside, same era.
Deterministic squeezed states with collective measurements and feedback
Cox, K. C., Greve, G. P., Weiner, J. M. & Thompson, J. K · 2016
Cited alongside, same era.
Measurement noise 100 times lower than the quantum-projection limit using entangled atoms
Hosten, O., Engelsen, N. J., Krishnakumar, R. & Kasevich, M. A · 2016
Cited alongside, same era.
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Observation of laughlin states made of light
Clark, L. W., Schine, N., Baum, C., Jia, N. & Simon, J · 2020
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Mapping optical standing-waves of an open-access Fabry-Pérot cavity with a tapered fiber
Ferri, F., Garcia, S., Baghdad, M., Reichel, J. & Long, R · 2020
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Entanglement transport and a nanophotonic interface for atoms in optical tweezers
Ðorđević, T. et al · 2021
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Programmable interactions and emergent geometry in an array of atom clouds
Periwal, A. et al · 2021
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Aberrated optical cavities
Jaffe, M., Palm, L., Baum, C., Taneja, L. & Simon, J · 2021
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Electro-optic spatial light modulator from an engineered organic layer
Benea-Chelmus, I.-C. et al · 2021
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Aberrated optical cavities
Jaffe, M., Palm, L., Baum, C., Taneja, L. & Simon, J · 2021
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Entangling, controlling, and detecting individual strontium atoms in optical tweezer arrays (California Institute of Technology, 2021)
Madjarov, I. S · 2021
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Mid-circuit cavity measurement in a neutral atom array
Deist, E. et al · 2022
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Micro-fabricated mirrors with finesse exceeding one million
Jin, N. et al · 2022
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High finesse bow-tie cavity for strong atom-photon coupling in rydberg arrays
Chen, Y.-T. et al · 2022
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A cavity loadlock apparatus for next-generation quantum optics experiments
Yin, C. et al · 2023
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