刘立峰 1,2胡依奇 1,2张示城 1祁义红 1[ ... ]龚尚庆 1,**
作者单位
摘要
1 华东理工大学物理学院, 上海 200237
2 华东理工大学材料科学与工程学院, 上海 200237
3 福建师范大学物理与能源学院, 福建省量子调控与新能源材料重点实验室, 福建 福州 350108

根据洛伦兹互易定理,在通常的光学系统中,交换信号源和探测器的位置后接收到的光信号不变。这为光路设计和分析带来了方便。在全光通信和量子网络中,需要有效地控制光信号的定向传输以避免反射光对信号的干扰、分离相向传输的光信号等,因此需要只允许光单向传输的非互易器件。以磁光隔离器为背景切入,简单介绍磁光领域的研究现状。重点从有源和无源两个方面对无磁非互易领域的发展进行综述,以展现量子光学在无磁非互易领域的重要应用。

量子光学 洛伦兹互易 磁光非互易 无磁非互易 有源器件 无源器件 
光学学报
2022, 42(3): 0327010
作者单位
摘要
华东理工大学理学院, 上海 200237
基于腔内极化子的量子理论,实验研究了腔内电磁诱导透明(EIT)现象。通过升高铷气室温度,使铷原子数目大量增加。当系统满足集体强耦合条件时,利用弱控制场可实现EIT以及线宽的显著压窄。随着温度的继续升高,耦合效应增强,腔线宽被进一步压窄。
量子光学 腔内电磁诱导透明 腔内极化子 腔线宽压窄 集体强耦合 
光学学报
2018, 38(7): 0727002
Author Affiliations
Abstract
College of Physics, East China University of Science and Technology, Shanghai 200237, China
A scheme is proposed for tunable all-optical switching based on the double-dark states in a five-level atom-cavity system. In the scheme, the output signal light of the reflection and the transmission channels can be switched on or off by manipulating the control field. When the control light is coupled to the atom-cavity system, the input signal light is reflected by the cavity. Thus, there is no direct coupling between the control light and the signal light. Furthermore, the position of the double-dark states can be changed by adjusting the coherent field, and, thus, the switching in our scheme is tunable. By presenting the numerical calculations of the switching efficiency, we show that this type of the interaction-free all-optical switching can be realized with high switching efficiency.
270.1670 Coherent optical effects 230.1150 All-optical devices 
Chinese Optics Letters
2017, 15(9): 092702
作者单位
摘要
华东理工大学理学院, 上海 200237
采用腔透射谱法测量了Λ型三能级系统的五阶克尔非线性系数。对二能级和Λ型三能级系统的五阶非线性系数进行数值模拟,比较发现,原子相干对非线性系数具有增强作用。同时将三阶和五阶极化率的模拟结果与测量结果进行对比,发现两者具有很好的一致性。
非线性光学 原子相干 电磁诱导透明 非线性系数 腔透射谱法 
光学学报
2017, 37(7): 0719002
Author Affiliations
Abstract
Department of Physics, East China University of Science and Technology, Shanghai 200237, China
A terahertz (THz) waveguide using a metallic nanoslit whose width is much smaller than the skin depth is analytically investigated. By taking some important physical properties into account, we derive a simple, yet accurate, expression for the effective index. We also study the changes in modal field and the attenuation coefficient in the whole THz region, and find some interesting physical properties. Finally, we verify that these theoretical analyses coincide with the rigorous numerical simulations. This research can be useful for various applications of THz waveguides made of metallic nanoslits.
240.6680 Surface plasmons 230.7370 Waveguides 260.3090 Infrared, far 260.3910 Metal optics 
Chinese Optics Letters
2016, 14(7): 072401
Author Affiliations
Abstract
Department of Physics, East China University of Science and Technology, Shanghai 200237, China
A scheme is presented to generate atomic entanglement by detecting the transmission spectrum of a coupled-cavity system. In the scheme, two 3-level atoms are trapped in separate cavities coupled by a short optical fiber, and the atomic entanglement could be realized in a heralded way by detecting the transmission spectrum of the coupled-cavity system.
270.5585 Quantum information and processing 140.3945 Microcavities 020.5580 Quantum electrodynamics 
Chinese Optics Letters
2015, 13(9): 092701
Author Affiliations
Abstract
Global change in the dispersive behavior of terahertz (THz) plasmons on metal wires with wide radii ranging from 5 nm to 0.5 mm is systematically investigated. Through rigorous numerical calculations, we find that the dispersion of a metal wire with a radius of 5 nm increases by about 4-6 orders of magnitude compared with the case of a metallic wire with a radius of 0.5 mm. Zero-dispersion points appear when the frequency is lower than 3 THz, and the positions of the zero-dispersion points can shift with the frequency. Finally, we provide an explicit expression that agrees very well with the numerical calculations.
240.6680 Surface plasmons 260.3090 Infrared, far 230.7370 Waveguides 260.3910 Metal optics 
Chinese Optics Letters
2013, 11(8): 082401

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!