国家自然科学基金(11034002)

作品数:24被引量:25H指数:4
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相关作者:印建平纪宪明周巧巧徐淑武施建珍更多>>
相关机构:华东师范大学南通大学东华理工大学南通农业职业技术学院更多>>
相关期刊:《Chinese Physics B》《Science Bulletin》《物理学报》《华东师范大学学报(自然科学版)》更多>>
相关主题:原子光学ELECTROSTATICMOLECULES空间光调制器COLD更多>>
相关领域:理学机械工程电子电信天文地球更多>>
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Two types of highly efficient electrostatic traps for single loading or multi-loading of polar molecules
《Chinese Physics B》2020年第4期284-291,共8页Bin Wei Hengjiao Guo Yabing Ji Shunyong Hou Jianping Yin 
Project supported by the National Natural Science Foundation of China(Grant Nos.11834003,91536218,11034002,11274114,11504112,and 11874151);the National Key Basic Research and Development Program of China(Grant No.2011CB921602);the Fundamental Research Funds for the Central Universities,China,Shanghai Pujiang Talents Plan,China(Grant No.18PJ1403100);Exploration Funds from the Shanghai Natural Science Foundation,China(Grant No.18ZR1412700)。
Two novel electrostatic traps named octopole-based disk electrostatic trap(ODET)and tubular-based disk electrostatic trap(TDET)are proposed for trapping cold polar molecules in low-field-seeking states.Using MgF as th...
关键词:cold MOLECULES ELECTROSTATIC TRAPPING MONTE Carlo simulations 
冷分子静电曲面反射镜
《华东师范大学学报(自然科学版)》2020年第2期64-69,共6页李静 杨正海 侯顺永 魏斌 林钦宁 杨涛 印建平 
国家自然科学基金(91536218,11034002,11274114,11504112,11874151);国家重点基础研究发展计划(2011CB921602);中央高校基本科研基金;上海市浦江人才计划(18PJ1403100);上海市自然科学基金(18ZR1412700);上海高校特聘教授(东方学者)岗位计划.
分子(原子)平面反射镜作为重要的光学元件之一,被广泛应用于分子(原子)囚禁、储存、导引等实验中;但由于其仅能实现粒子纵向速度改变而在横向上没有聚焦作用,从而导致了粒子容易发散.以重氨(ND3)分子为例,提出了一种结构简洁、紧凑的微...
关键词:微静电曲面反射镜 冷分子 分子腔 
Generation of high-energy-resolved NH_3 molecular beam by a Stark decelerator with 179 stages
《Chinese Physics B》2019年第5期95-100,共6页Bin Wei Shunyong Hou Hengjiao Guo Yabing Ji Shengqiang Li Jianping Yin 
Project supported by the National Natural Science Foundation of China(Grant Nos.91536218,11034002,11274114,11504112,and 11504318);the National Basic Research Program of China(Grant No.2011CB921602);the Fundamental Research Funds for the Central Universities,China,Shanghai Pujiang Talents Plan,China(Grant No.18PJ1403100);Exploration Funds for the Shanghai Natural Science Foundation,China(Grant No.18ZR1412700)
We demonstrate the production of cold, slow NH_3 molecules from a supersonic NH_3 molecular beam using our electrostatic Stark decelerator consisting of 179 slowing stages. By using this long Stark decelerator, a supe...
关键词:STARK DECELERATION molecular beams cold MOLECULES 
Combination of multiple tools for surface manipulation of polar molecules
《Chinese Physics B》2017年第11期162-166,共5页王强 魏斌 郭恒娇 李胜强 侯顺永 印建平 
Project supported by the National Natural Science Foundation of China(Grant Nos.91536218,11034002,11274114,11504112,and 11504318);the National Basic Research Program of China(Grant No.2011CB921602)
A scheme of surface manipulation and control of polar molecules is proposed, which combines three tools of electrostatic velocity filtering, bunching, and storing. In the scheme, a slow molecular beam is produced from...
关键词:electrostatic surface manipulation cold molecular beam 
BaF radical: A promising candidate for laser cooling and magneto-optical trapping
《Chinese Physics B》2017年第3期321-329,共9页许亮 魏斌 夏勇 邓联忠 印建平 
Project supported by the National Natural Science Foundation of China(Grant Nos.91536218,11374100,10904037,10974055,11034002,and 11274114);the National Key Basic Research and Development Program of China(Grant No.2011CB921602);the Natural Science Foundation of Shanghai Municipality,China(Grant No.13ZR1412800)
Recently, there have been great interest and advancement in the field of laser cooling and magneto-optical trapping of molecules. The rich internal structure of molecules naturally lends themselves to extensive and ex...
关键词:laser cooling magneto-optical trapping BaF radical 
Stark effect of the hyperfine structure of ICl in its rovibronic ground state:Towards further molecular cooling
《Chinese Physics B》2016年第1期565-568,共4页王庆辉 邵旭萍 杨晓华 
supported by the National Natural Science Foundation of China(Grant No.11034002);the National Basic Research Program of China(Grant No.2011CB921602);Qing Lan Project,China
Hyperfine structures of IC1 in its vibronic ground state due to the nuclear spin and electric quadruple interactions are determined by diagonalizing the effective Hamiltonian matrix. Furthermore, the Stark sub-levels ...
关键词:hyperfine structure Stark effect 
用波晶片相位板产生角动量可调的无衍射涡旋空心光束
《物理学报》2015年第23期147-155,共9页施建珍 许田 周巧巧 纪宪明 印建平 
国家自然科学基金(批准号:11034002;11274114);科技部量子调控重大研究计划项目(批准号:2011CB921602);浙江省重中之重学科开放基金项目(批准号:xkzwl1522);江苏省前瞻性联合研究项目(批准号:BY2015047-07)资助的课题~~
本文提出了一种用波晶片产生无衍射涡旋空心光束的新方案.根据晶体双折射的性质,设计波晶片的厚度,在一块晶体薄片上对o光和e光分别形成各自的四台阶相位板,线偏振光入射到该相位板后,o光和e光衍射按强度叠加,利用准伽利略望远镜系统聚...
关键词:原子光学 涡旋光束 光子角动量 四台阶相位板 
亚声速NH3分子束静电Stark减速的理论研究
《物理学报》2015年第17期79-87,共9页刘建平 侯顺永 魏斌 印建平 
国家自然科学基金(批准号:10674047,10804031,10904037,10974055,11034002,11274114);国家重点基础研究发展计划(批准:2006CB921604,2011CB921602);上海市基础重点项目(批准号:07JC14017);上海市重点学科建设项目(批准号:B408)资助的课题~~
本文基于自行研制的第二代(180级)静电Stark减速器,展开了对NH_3的有效减速与冷却的理论研究.首先,计算了NH_3分子在|J=1,K=1〉量子态的Stark分裂,研究了不同的同步相位角下,减速器中NH_3分子的纵向相空间稳定区域;接着,采用Monte-Carl...
关键词:冷分子 Stark减速 氨分子 
用四台阶相位板产生涡旋光束
《物理学报》2015年第18期250-258,共9页施建珍 杨深 邹亚琪 纪宪明 印建平 
国家自然科学基金(批准号:11034002,11274114);国家重点基础研究发展计划(批准号:2011CB921602)资助的课题~~
涡旋光束的产生与应用是当前光学领域的研究热点.利用傅里叶级数展开法分析了四台阶相位板的相位结构,发现四台阶相位板可看作是由一系列不同拓扑荷数的螺旋相位板所组成,用线偏振光直接照射相位板时,将产生多级衍射光波,各级衍射光均...
关键词:涡旋光束 四台阶相位板 螺旋相位板 轨道角动量 
Cooling and trapping polar molecules in an electrostatic trap被引量:1
《Chinese Physics B》2015年第5期318-322,共5页王振霞 顾振兴 邓联忠 印建平 
supported by the National Natural Science Foundation of China(Grant Nos.10674047,10804031,10904037,10974055,11034002,and 11274114);the National Key Basic Research and Development Program of China(Grant Nos.2006CB921604 and 2011CB921602);the Basic Key Program of Shanghai Municipality,China(Grant No.07JC14017);the Shanghai Leading Academic Discipline Project,China(Grant No.B408)
An electrostatic trap for polar molecules is proposed. Loading and trapping of polar molecules can be realized by applying different voltages to the two electrodes of the trap. For ND3 molecular beams centered at -10 ...
关键词:trapping molecules cooling molecules Stark shift of molecules 
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