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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Electromagnetically induced phase grating via population trapping condition in a microwave-driven four-level atomic system
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Electromagnetically induced phase grating via population trapping condition in a microwave-driven four-level atomic system

机译:微波驱动的四能级原子系统中通过阱俘获条件的电磁感应相位光栅

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摘要

An electromagnetically induced phase grating (EIG) controlled by coherent population trapping (CPT) in a four-level Y-type atomic system is studied. The CPT condition promotes significantly the dispersion of light into the first-order diffraction in constructing a phase modulation grating by transferring energy from zero-order to first-order diffraction. The diffraction efficiency of the phase grating is enhanced by up to 30% of the total probe intensity at the first-order diffraction. The present atomic scheme takes full advantage of the microwave-driven field for generating the EIG, which induces the quantum coherence and controls linear and nonlinear behaviors of the present system. Furthermore, it is noticed that the higher-order diffraction intensities are improved via a microwave-driven field and the phase and amplitude of the microwave field can improve the efficiency of the phase grating. These novel results could find potential applications in developing new photonic devices, such as all-optical switching at low light levels. (C) 2014 Optical Society of America
机译:研究了四能级Y型原子系统中由相干粒子阱(CPT)控制的电磁感应相位光栅(EIG)。 CPT条件通过将能量从零阶衍射转移到一阶衍射,在构造相位调制光栅时显着促进了光向一阶衍射的散射。在一级衍射时,相位光栅的衍射效率提高了总探头强度的30%。本原子方案充分利用了微波驱动场来产生EIG,该EIG诱导了量子相干性并控制了本系统的线性和非线性行为。此外,注意到通过微波驱动的场提高了高阶衍射强度,并且微波场的相位和幅度可以提高相位光栅的效率。这些新颖的结果可能会在开发新的光子器件方面找到潜在的应用,例如在低光照水平下进行全光开关。 (C)2014年美国眼镜学会

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