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Annals of the New York Academy of Sciences, 1994
This graduate textbook unifies the presentation of new and well-established basic theory and experiments for the quantum properties of light. Quantum optics has become a major field of theoretical and experimental physics. Many of the key tests of unique quantum phenomena, such as entanglement, have been demonstrated in quantum optics experiments.
Walls, D. F., Milburn, Gerard J.
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This graduate textbook unifies the presentation of new and well-established basic theory and experiments for the quantum properties of light. Quantum optics has become a major field of theoretical and experimental physics. Many of the key tests of unique quantum phenomena, such as entanglement, have been demonstrated in quantum optics experiments.
Walls, D. F., Milburn, Gerard J.
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2015 11th International Conference on Natural Computation (ICNC), 2015
Quantum computing offers a much more efficient way of computation than its classical counterpart, due to the specific characters in quantum mechanics. To realize quantum computers, one must find a specific physical system as a platform. Available systems include atoms, electrons, ions, photons and so on.
Dongyang Wang, Junjie Wu 0003, Xun Yi
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Quantum computing offers a much more efficient way of computation than its classical counterpart, due to the specific characters in quantum mechanics. To realize quantum computers, one must find a specific physical system as a platform. Available systems include atoms, electrons, ions, photons and so on.
Dongyang Wang, Junjie Wu 0003, Xun Yi
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2007
Quantum optics is the study of the quantum theory of light at low energies and interactions with bound electronic systems. We discuss physically achievable states of the electromagnetic field, including squeezed states and single photons states, as well as schemes by which they may be generated and measured.
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Quantum optics is the study of the quantum theory of light at low energies and interactions with bound electronic systems. We discuss physically achievable states of the electromagnetic field, including squeezed states and single photons states, as well as schemes by which they may be generated and measured.
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Science, 2016
Quantum Optics A circulator is a passive three- or four-port device that routes signals according to a simple protocol: If the ports are numbered in ascending order, a signal that enters the circulator through port 1, 2, 3, or 4 exits it through port 2, 3, 4, or 1, respectively. Scheucher et al.
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Quantum Optics A circulator is a passive three- or four-port device that routes signals according to a simple protocol: If the ports are numbered in ascending order, a signal that enters the circulator through port 1, 2, 3, or 4 exits it through port 2, 3, 4, or 1, respectively. Scheucher et al.
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Journal of Modern Optics, 1997
Simple physical ideas lead us to identify the phase of a single mode of the electromagnetic field as the quantity conjugate to the photon number. This in turn leads to the form of the phase probability distribution. The phase operator cannot be represented in the conventional infinite dimensional Hilbert space but can be expressed by means of a finite ...
Pegg, DT, Barnett, SM
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Simple physical ideas lead us to identify the phase of a single mode of the electromagnetic field as the quantity conjugate to the photon number. This in turn leads to the form of the phase probability distribution. The phase operator cannot be represented in the conventional infinite dimensional Hilbert space but can be expressed by means of a finite ...
Pegg, DT, Barnett, SM
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Nanophotonics and quantum optics
2014 16th International Conference on Transparent Optical Networks (ICTON), 2014The performances of photonic devices are getting closer to those required by quantum technology and a bridge may be created by substantial progress in our ability to control light-matter interactions. The dramatic advances of nanotechnology experienced in recent years have enabled us to fabricate optical nanostructures that greatly improve the ...
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Dynamics in Nonlinear Optics and Quantum Optics
Applied Physics B, 2005The dynamics in nonlinear optics and quantum optics is at the heart of a wealth of intriguing phenomena both from the point of view of fundamental sciences and technical applications. Ever since the invention of the laser, this field has been the pacemaker of novel discoveries in optics as well as nonlinear science.
Ackemann, T, Denz, C, Mitschke, F
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Quantum optics of dielectric media
Physical Review A, 1989Because quantum fluctuations impose fundamental limits on the accuracy of measurements, much attention is now being devoted to the problem of moderating or supressing their effect. If a quantity to be measured can be regarded as one of a pair of conjugate variables, for example, then its variance can usually be made arbitrarily small, but only at the ...
, Glauber, , Lewenstein
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2013 Conference on Lasers & Electro-Optics Europe & International Quantum Electronics Conference CLEO EUROPE/IQEC, 2013
What does it mean if optics is quantum? Is hard core quantum optics solely concerned with the study of fundamental physics questions or is it also useful for practical applications? The course will give answers to these questions following the tradition of the two last CLEO Europe's.
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What does it mean if optics is quantum? Is hard core quantum optics solely concerned with the study of fundamental physics questions or is it also useful for practical applications? The course will give answers to these questions following the tradition of the two last CLEO Europe's.
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Quantum Chaos, Transport, and Control—in Quantum Optics
2006Chaos implies unpredictability, fluctuations, and the need for statistical modelling. Quantum optics has developed into one of the most advanced subdisciplines of modern physics in terms of the control of matter on a microscopic scale, and, in particular, of isolated, single quantum objects.
J. Madronero +9 more
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