自发产生的相干性和相关相位对非相干泵浦三级阶梯型系统全光切换的影响

Luong Thi Yen Nga, Nguyen Huy Bang, LE Thi Dung, Hoang Minh Dong, Trang Huynh Dang Khoa, Nguyen Thi Thu Hien
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摘要

本文研究了在非相干泵浦场存在的情况下,自发产生的相干性(SGC)和相对相位对探测激光脉冲传播的影响。研究发现,当控制激光场开启时,介质会形成电磁诱导透明效应(EIT)。因此,探针激光脉冲的传播具有类似孑子的形式/形状。相反,当控制激光场关闭时,探针激光场会迅速衰减。利用这一特点,可以通过 "关闭 "和 "打开 "控制激光场来创建一种 "关闭 "和 "打开 "探测激光场的机制,即基于 EIT 的全光学开关机制。除了强度和频率,激光场还具有偏振和相位特征。EIT 具有量子干涉的性质,因此对偏振变化非常敏感,尤其是在激光场之间存在相对相位的情况下。因此,它们也会极大地影响脉冲传播和光开关性能。该研究成果有助于逻辑门、量子光学信息处理器和量子计算机等光子设备的实验观测或应用。
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INFLUENCE OF SPONTANEOUSLY GENERATED COHERENCE AND RELATED PHASE ON AN ALL-OPTICAL SWITCHING IN A THREE-LEVEL LADDER-TYPE SYSTEM WITH INCOHERENT PUMPING
This paper investigates the impact of spontaneously generated coherence (SGC) and relative phase on the propagation of a probe laser pulse in the presence of an incoherent pump field. It was discovered that when the control laser field is turned on, the medium forms an electromagnetically induced transparency (EIT) effect. Hence, the propagation of the probe laser pulse has a like-soliton form/shape. On the contrary, the probe laser field is rapidly attenuated when the control laser field is turned off. This feature allows the creation of a mechanism to turn “off” and “on” the probe laser field through “turning off” and “on” the control laser field, i.e., an all-optical switching mechanism based on EIT. Besides intensity and frequency, the laser field is also characterized by polarization and phase. The EIT has the nature of quantum interference, so it is very sensitive to changes in polarization, especially in the presence of relative phase between laser fields. Therefore, they also significantly affect pulse propagation and optical switching performance. The research results could be helpful for experimental observations or applications in photonic devices such as logic gates, quantum optical information processors, and quantum computers.
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