Dutta Bibhas Kumar, Panchadhyayee Pradipta, Bayal Indranil, Mahapatra Prasanta Kumar, Das Nityananda
Department of Physics, Sree Chaitanya College (WB State University), North 24 Parganas, Habra, WB, 743 268, India.
Department of Physics (UG & PG), Prabhat Kumar College (Vidyasagar University), Contai, Purba Medinipur, 721404, India.
Sci Rep. 2020 Oct 8;10(1):16779. doi: 10.1038/s41598-020-73825-3.
We propose an atomic model in close-loop configuration, which exhibits controllable symmetric and asymmetric evolution of significantly enhanced diffraction peaks of the weak probe beam in an opto-atomic grating at far-field regime. Such results are obtained by the linear and nonlinear modulation of the intensities of the diffraction peaks as a result of multi-wave-mixing-induced modification of spatially modulated coherence in a closed four-level atomic system. Novelty of the results lies in predicting the diffraction pattern with uniform peak height due to the dominance of the amplitude part of the grating-transfer-function at the condition of exact atom-field resonance, which is unique to the present model. Efficacy of the present scheme is to apply it in producing nonlinear light generated by four-wave-mixing-induced control of spatially modulated coherence effect. The work also finds its importance for its applicability in the field of all-optical devices.
我们提出了一种闭环配置的原子模型,该模型在远场区域的光原子光栅中,能使弱探测光束显著增强的衍射峰呈现出可控的对称和不对称演化。这些结果是通过在封闭的四能级原子系统中,多波混频引起的空间调制相干性的改变,对衍射峰强度进行线性和非线性调制而获得的。结果的新颖之处在于,在精确的原子 - 场共振条件下,由于光栅传递函数的幅度部分占主导,预测出具有均匀峰高的衍射图案,这是本模型独有的。本方案的有效性在于将其应用于通过四波混频诱导的空间调制相干效应控制来产生非线性光。这项工作因其在全光器件领域的适用性也具有重要意义。