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Journal ArticleDOI

Preparation of multiparty entangled states using pairwise perfectly efficient single-probe photon four-wave mixing

TLDR
In this article, a multichannel pairwise four-wave mixing (FWM) scheme was proposed to achieve multiparty entanglement with perfectly efficient, ultra-low, multichannels pairwise FWM.
Abstract
We propose a scheme to achieve multiparty entanglement with perfectly efficient, ultraslow, multichannel pairwise four-wave mixing (FWM). A cold atomic medium is illuminated with an $N$-mode continuous-wave (cw) control laser to produce coherent mixtures of excited states. An ultraslowly propagating, single-photon quantum probe field completes multichannel, pairwise FWM, creating a depth dependent entanglement of $N$ Fock states. We show explicitly that this scheme can be utilized to realize an $N$-party entangled state of ultraslowly propagating quantized fields. In particular, we give the explicit analytical expression of a three-party W-state propagating at an ultraslow group velocity, and the numerical results of a multiparty W state of $2M+1$ Fock states.

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Journal ArticleDOI

Electromagnetically induced transparency in V -, Λ -, and cascade-type schemes beyond steady-state analysis

TL;DR: In this article, the authors derived the analytical expressions of the space-time dependent probe field, the corresponding phase shift, absorption or amplification, group velocity, and group velocity dispersion for all three schemes.
Journal ArticleDOI

Four-wave mixing in molecular magnets via electromagnetically induced transparency

TL;DR: In this paper, a time-dependent analysis of four-wave mixing (FWM) in molecular magnets via electromagnetically induced transparency was performed and the analytical expressions of pulsed electromagnetic waves, including the FWM-generated pulse, group velocities, phase shifts, and absorption coefficients were obtained.
Journal ArticleDOI

Carrier-envelope phase-dependent atomic coherence and quantum beats

TL;DR: In this article, the carrier-envelope phase (CEP) of few-cycle laser pulses has profound effects on the bound-state atomic coherence even in the weak-field regime where both tunneling and multiphoton ionization hardly take place.
Journal ArticleDOI

Four-wave mixing via electron spin coherence in a quantum well waveguide

TL;DR: In this paper, the four-wave mixing in a double-V scheme via robust electron spin coherence in semiconductor quantum wells was analyzed, and the results demonstrated that the electromagnetically induced gain loss, the electromagnetic induced absorption and superluminal propagation phenomena may be realized in quantum quantum wells at room temperatures.
Journal ArticleDOI

Ultraslow temporal vector optical solitons in a cold four-level tripod atomic system

TL;DR: In this paper, the authors showed that the two orthogonally polarized components of the low-intensity signal field can evolve into various distortion-free temporal vector optical solitons, such as bright-bright vector solITons with ultraslow group velocity.
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