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381.
We review the basic light‐matter interactions and optical properties of chip‐based single photon sources, that are enabled by integrating single quantum dots with planar photonic crystals. A theoretical framework is presented that allows one to connect to a wide range of quantum light propagation effects in a physically intuitive and straightforward way. We focus on the important mechanisms of enhanced spontaneous emission, and efficient photon extraction, using all‐integrated photonic crystal components including waveguides, cavities, quantum dots and output couplers. The limitations, challenges, and exciting prospects of developing on‐chip quantum light sources using integrated photonic crystal structures are discussed. 相似文献
382.
We show that, in the presence of a scalar field the range of the value of external field parameters a and b, at which corresponding Hamiltonian operator is hermitian, essentially wider than in its absence. It allows us to study precisely
the question on stability of QED vacuum in the presence of a strong electric field of a point charge Z|e| and external scalar Coulomb field with respect to electron-positron pair production. Also, we consider the scattering of
Dirac particle by the specified fields in 3+1 dimensions. The phase shift and wave functions are obtained exactly. We calculate
the scattering amplitude in a quasi-classical approximation as a partial wave series. By means of figures obtained for the
cross section σ(θ) in general and special cases, such as a≠b and a=b, we find that σ(θ) is not exactly symmetric about θ=π. 相似文献
383.
Passage of beamstrahlung photons through the bunch fields at the interaction point of the ILC determines background pair production.
The number of background pairs per bunch crossing due to the Breit-Wheeler, Bethe-Heitler and Landau-Lifshitz processes is
well-known. However, the Breit-Wheeler process also takes place in and is modified by the bunch fields. A full QED calculation
of this stimulated Breit-Wheeler process reveals cross-section resonances due to the virtual particle reaching the mass shell.
The one-loop electron self-energy in the bunch field is also calculated and included as a radiative correction. The bunch
field is considered to be a constant crossed electromagnetic field with associated bunch field photons. Resonance is found
to occur whenever the energy of contributed bunch field photons is equal to the beamstrahlung photon energy. The stimulated
Breit-Wheeler cross-section exceeds the ordinary Breit-Wheeler cross-section by several orders of magnitude and a significantly
different pair background may result.
相似文献
384.
We present a scheme to implement a one-qubit phase gate with a two-level atom crossing an optical cavity in which some identical atoms are trapped. One can conveniently acquire an arbitrary phase shift of the gate by properly choosing the number of atoms trapped in the cavity and the velocity of the atom crossing the cavity. The present scheme provides a very simple and efficient way for implementing one-qubit phase gate. 相似文献
385.
A scheme is presented for realizing quantum logic gates for two
atoms localized in two distant optical cavities. Our scheme works in
a regime in which the atom--cavity coupling strength is smaller
than the cavity decay rate. Thus the requirement on the quality
factor of the cavities is greatly relaxed. Furthermore, the fidelity
of our scheme is not affected by detection inefficiency and
atomic decay. These advantages are important in view of experiment. 相似文献
386.
In this paper, we propose a scheme for implementing quantum game
(QG) in cavity quantum electrodynamics(QED). In the scheme, the
cavity is only virtually excited and thus the proposal is
insensitive to the cavity fields states and cavity decay. So our
proposal can be experimentally realized in the range of current
cavity QED techniques. 相似文献
387.
388.
Chang-Yong Chen 《International Journal of Theoretical Physics》2006,45(4):690-697
A scheme for approximately and conditionally teleporting an unknown atomic state via multi-photon interaction in cavity quantum electro dynamics (QED) is proposed. It is the extension of the scheme of Zheng (2004) [Physical Review A69, 064302], which is based on Jaynes–Cummings model in QED and where only a time point of system evolution and the corresponding Fidelity implementing the teleportation are given. In our scheme, the cavity field may be Fock state and the multi-photon interaction Jaynes–Cummings model is used to realize the approximate and conditional teleportation. Our scheme does not involve the Bell-state measurement and an additional atom, only requiring two atoms and one single-mode cavity. The fidelity of the scheme is higher than that of Zheng (2004) [Physical Review A69, 064302]. The scheme may be generalized to not only the teleportation of the state of a cavity mode to another mode by means of a single atom but also the teleportation of the state of a trapped ion.
PACS: 03.67.-Ta, 03.65.Ta, 42.50.Dv 相似文献
389.
Interaction of a pair coherent state with a three-level Λ-type atom and generation of a modified Bessel-Gaussian state with a vortex structure 下载免费PDF全文
The evolution of a system state is derived based on the nonresonant interaction of a three-level "Λ" type atom with two cavity modes at a pair coherent state and two classic fields,and a cavity field state is analyzed in detail under conditional detecting.It is found that the quantized modified Bessel-Gaussian states as well as the superposition states consisting of the quantized vortex states with different weighted coefficients may be prepared through carefully preparing an initial atomic state and appropriately adjusting the interaction time.The scheme provides an additional choice to realize the two-mode quantized vortex state within the context of cavity quantum electrodynamics(QED). 相似文献
390.
We study the influence of screening effect on quantum decoherence for charge qubit and the process of quantum information storage. When the flux produced by the circulating current in SQUID loop is considered, screening effect is formally characterized by a LC resonator. Using large-detuning condition and Fröhlich transformation in the qubit-cavity-resonator system, we calculate the decoherence factor for charge qubit and the effective qubit-cavity Hamiltonian. The decoherence factor owns a factorized structure, it shows that screening effect is a resource of decoherence for charge qubit. The effective Hamiltonian shows that the screening effect results in a frequency shift for charge qubit and a modified qubit-cavity coupling constant induced by a LC resonator. 相似文献