Dark state atoms trapping in a magic-wavelength optical lattice near the nanofiber surface

来源 :ChineseOpticsLetters | 被引量 : 0次 | 上传用户:fyf7228912
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
We report the experimental realization of dark state atoms trapping in a nanofiber optical lattice. By applying the magic-wavelength trapping potentials of cesium atoms, the AC Stark shifts are strongly suppressed. The dark magneto-optical trap efficiently transfers the cold atoms from bright (6S1/2, F = 4) into dark state (6S1/2, F = 3) for hyperfine energy levels of cesium atoms. The observed transfer efficiency is as high as 98% via saturation measurement. The trapping lifetime of dark state atoms trapped by a nanofiber optical lattice is also investigated, which is the key element for realizing optical storage. This work contributes to the manipulation of atomic electric dipole spin waves and quantum information storage for fiber networks.
其他文献
期刊
期刊
基于可调谐半导体激光吸收光谱技术开展了检测空气中乙醇蒸气浓度的方法研究,并采用乙醇分子在7180 cm-1(1393 nm)附近的吸收峰作为鉴别乙醇的特征信息。建立多元线性回归方程来拟合求解多分子吸收共存的问题,以消除共存水蒸气对空气中乙醇蒸气含量检测的干扰。针对谱线处理中存在的光谱误差问题,提出了修正方程,与实验的结果一致。开放光路测量实验结果表明,系统的积分浓度检测限达到30×10-6 m。
利用元素间强烈的放热反应,采用激光引燃自蔓延Al-Ti-C合金合成铝合金晶粒细化中间合金。结果显示,所合成Al-50(TiC)中间合金内部作为异质核心的形核粒子TiC呈颗粒状,平均尺寸小于1 μm,粒子弥散分布,TiAl3呈长条状,中间合金加入铝熔体内,形核粒子较容易弥散开来。保温90 min未出现聚集成团现象,具有良好抗衰退能力。在所述实验条件下可使工业纯铝平均晶粒尺寸细化为150 μm以下,差示扫描量热法(DSC)热分析曲线出现一个尖锐的吸热峰和一个浑圆的放热峰。同时分析了激光引燃自蔓延合成的过程。
英国赫特福德郡波尔道克军务电子学硏究所正在研制一种工作波长在10微米区的敞开式气体放电光激射器。它的红外平均功率输出为10瓦数量级,具有百分之几的效率。
期刊
A photonic approach to concurrently measure the angle-of-arrival (AOA) and the chirp rate of a linear frequency modulated (LFM) signal is proposed and experimentally demonstrated. The measurement is achieved by estimating the differential frequency of a t
期刊
A simple method to objectively and simultaneously measure eye's longitudinal and transverse chromatic aberrations was proposed. A dual-wavelength wavefront measurement system using two Hartmann–Shack wavefront sensors was developed. The wavefronts of the
建立了一套精确测量谱线位移的CARS装置,用它测量了氮气和液氮、气态和液态硝基苯CARS的谱线位移和形状变化。
期刊