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Donnan Electric Potential Dependence of Intraparticle Diffusion of Malachite Green in Single Cation Exchange Resin Particles: A Laser Trapping-Microspectroscopy Study
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作者 Nguyen M. Cuong Shoji Ishizaka Noboru Kitamura 《American Journal of Analytical Chemistry》 2012年第3期188-194,共7页
A laser trapping-microspectroscopy technique combined with excitation energy transfer from a fluorescent cationic dye (Rhodamine B, RB+) to a non-fluorescent cationic dye (Malachite Green, MG+) was employed to study p... A laser trapping-microspectroscopy technique combined with excitation energy transfer from a fluorescent cationic dye (Rhodamine B, RB+) to a non-fluorescent cationic dye (Malachite Green, MG+) was employed to study pH effects on the diffusion coefficients of MG+ (D(MG+)) in single cation-exchange resin microparticles with the diameters of 16 μm. When RB+-pre-adsorbed resin particles were soaked in an aqueous MG+ solution, the RB+ fluorescence was quenched gradually with the soaking time. The time course of the quenching efficiency of RB+ by MG+ was then used to evaluate the D(MG+) value in the particle. The D(MG+) value increased from 1.1 × 10-11 to 4.3 × 10-11 cm2.s–1 on going the solu- tion pH value from 9 to 4. The results were explained reasonably by a Donnan electric potential model. 展开更多
关键词 Donnan Electric Potential Intraparticle Diffusion CATION-EXCHANGE Reaction single MICROPARTICLE laser trapping-Microspectroscopy
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4-7 Laser Cooling and Trapping of Rubidium Atoms
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作者 Cheng Xiaowei Yang Jie +1 位作者 Zhao Dongmei Ma Xinwen 《IMP & HIRFL Annual Report》 2014年第1期185-185,共1页
Atomic physics is developed by the realization of Magneto-Optical Trap (MOT)[1] which helps scientists achievethe miracles of Bose Einstein condensation[2], atomic frequency standard[3] and ultra-cold plasma[4]. We bu... Atomic physics is developed by the realization of Magneto-Optical Trap (MOT)[1] which helps scientists achievethe miracles of Bose Einstein condensation[2], atomic frequency standard[3] and ultra-cold plasma[4]. We built arubidium MOT system and used it to cool and trap as many as 106 87Rb atoms with a density of 1010cm?3 and atemperature of 500 K.The MOT consists of three systems: the vacuum system, the laser system and the control system. The vacuumsystem is carefully designed to obtain a vacuum as high as 510?9 mbar. Rubidium atoms are evaporated intothe vacuum chamber by heating the pure rubidium metal to 40?C. 展开更多
关键词 laser cooling trapping
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Enhanced optical molasses cooling for Cs atoms with largely detuned cooling lasers
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作者 Di Zhang Yu-Qing Li +7 位作者 Yun-Fei Wang Yong-Ming Fu Peng Li Wen-Liang Liu Ji-Zhou Wu Jie Ma Lian-Tuan Xiao Suo-Tang Jia 《Chinese Physics B》 SCIE EI CAS CSCD 2020年第2期249-253,共5页
We report a detailed study of the enhanced optical molasses cooling of Cs atoms,whose large hyperfine structure allows to use the largely red-detuned cooling lasers.We find that the combination of a large frequency de... We report a detailed study of the enhanced optical molasses cooling of Cs atoms,whose large hyperfine structure allows to use the largely red-detuned cooling lasers.We find that the combination of a large frequency detuning of about-110 MHz for the cooling laser and a suitable control for the powers of the cooling and repumping lasers allows to reach a cold temperature of^5.5μK.We obtain 5.1×10^7 atoms with the number density around 1×10^12 cm^-3.Our result gains a lower temperature than that got in other experiments,in which the cold Cs atoms with the temperature of^10μK have been achieved by the optical molasses cooling. 展开更多
关键词 optical MOLASSES frequency DETUNING MAGNETO-OPTICAL TRAP laser cooling
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BaF radical: A promising candidate for laser cooling and magneto-optical trapping
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作者 许亮 魏斌 +2 位作者 夏勇 邓联忠 印建平 《Chinese Physics B》 SCIE EI CAS CSCD 2017年第3期321-329,共9页
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... 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 exciting applications. In this paper, the radical 138Ba19F, as a promising candidate for laser cooling and magneto-optical trapping, is discussed in detail.The highly diagonal Franck-Condon factors between theX2∑+1/2and A2∏1/2states are first confirmed with three different methods. Afterwards, with the effective Hamiltonian approach and irreducible tensor theory, the hypertine structure of theX2∑+1/2state is calculated accurately. A scheme for laser cooling is given clearly. Besides, the Zeeman effects of the upper ( A2∏1/2)andlower(X2∑+1/2)levels are also studied, and their respective g factors are obtained under a weak magnetic field. Its large g factor of the upper stateA2∏1/2is advantageous for magneto-optical trapping. Finally, by studying Stark effect of BaFin theX2∑+1/2, we investigate the dependence of the internal effective electric field on the applied electric field. It is suggested that such a laser-cooled BaF is also a promising candidate for precision measurement of electron electric dipole moment. 展开更多
关键词 laser cooling magneto-optical trapping BaF radical
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Trapping and Cooling of Single Atoms in an Optical Microcavity by a Magic-Wavelength Dipole Trap
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作者 李文芳 杜金锦 +2 位作者 文瑞娟 李刚 张天才 《Chinese Physics Letters》 SCIE CAS CSCD 2015年第10期68-71,共4页
We present trapping and cooling of single cesium atoms inside a microcavity by means of an intracavity far-off- resonance trap (FORT). By the 'magic' wavelength FORT, we achieve state-insensitive single-atom trapp... We present trapping and cooling of single cesium atoms inside a microcavity by means of an intracavity far-off- resonance trap (FORT). By the 'magic' wavelength FORT, we achieve state-insensitive single-atom trapping and cooling in a microeavity. The cavity transmission of the probe beam strongly coupled to single atoms enables us to continuously observe the intracavity atom trapping. The average atomic localization time inside the bright FORT is about 7ms by introducing cavity cooling with appropriate detuning. This experiment presents great potential in coherent state manipulation for strongly coupled atom photon systems in the context of cavity quantum electrodynamics. 展开更多
关键词 trapping and cooling of single atoms in an Optical Microcavity by a Magic-Wavelength Dipole Trap QED
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Efficient loading of ultracold sodium atoms in an optical dipole trap from a high power fiber laser
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作者 Jing Xu Wen-Liang Liu +7 位作者 Ning-Xuan Zheng Yu-Qing Li Ji-Zhou Wu Peng Li Yong-Ming Fu Jie Ma Lian-Tuan Xiao Suo-Tang Jia 《Chinese Physics B》 SCIE EI CAS CSCD 2021年第3期237-241,共5页
We report on a research of the loading of ultracold sodium atoms in an optical dipole trap,generated by two beams from a high power fiber laser.The effects of optical trap light power on atomic number,temperature and ... We report on a research of the loading of ultracold sodium atoms in an optical dipole trap,generated by two beams from a high power fiber laser.The effects of optical trap light power on atomic number,temperature and phase space density are experimentally investigated.A simple theory is proposed and it is in good accordance with the experimental results of the loaded atomic numbers.In a general estimation,an optimal value for each beam with a power of 9 W from the fiber laser is achieved.Our results provide a further understanding of the loading process of optical dipole trap and laid the foundation for generation of a sodium Bose–Einstein condensation with an optical dipole trap. 展开更多
关键词 optical dipole trap laser cooling high power fiber laser
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High efficiency, high power 808nm laser array and stacked arrays optimized for elevated temperature operation 被引量:5
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作者 Crump P A Crum T R +7 位作者 DeVito M Farmer J Grimshaw M Huang Z Igl S A Macomber S Thiagarajan P Wise D 《光机电信息》 2004年第6期1-11,共11页
Operation of 808-nm laser diode pumping at elevated temperature is crucial to many applications. Reliable operation at high power is limited by high thermal load and low catastrophic optical mirror damage (COMD) thres... Operation of 808-nm laser diode pumping at elevated temperature is crucial to many applications. Reliable operation at high power is limited by high thermal load and low catastrophic optical mirror damage (COMD) threshold at elevated temperature range. We demonstrated high efficiency and high power operation at elevated temperature with high COMD power. These results were achieved through device design optimization such as growth conditions, doping profile, and materials composition of the quantum-well and other layers. Electrical-to-optical efficiency as high as 62% was obtained through lowered threshold current, lowered series resistance and increased slope efficiency. The performance of single broad-area laser diodes scales to that of high power single bars on water-cooled copper micro-channel heatsinks or conductively-cooled CS heatsinks. No reduction in bar performance or significant spectral broadening is seen when these micro-channel coolers are assembled into 6-bar and 18-bar CW stacks for the highest power levels. 展开更多
关键词 激光技术 高功率激光 激光二极管 单发射器 COMD
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Experiments on trapping ytterbium atoms in optical lattices
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作者 周敏 陈宁 +7 位作者 张晓航 黄良玉 姚茂飞 田洁 高琪 蒋海灵 唐海瑶 徐信业 《Chinese Physics B》 SCIE EI CAS CSCD 2013年第10期262-266,共5页
Experiments on trapping ytterbium atoms in various optical lattices are presented. After the two-stage cooling, first in a blue magneto-optical trap and then in a green magneto-optical trap, the ultracold 171 Yb atoms... Experiments on trapping ytterbium atoms in various optical lattices are presented. After the two-stage cooling, first in a blue magneto-optical trap and then in a green magneto-optical trap, the ultracold 171 Yb atoms are successfully loaded into one-, two-, and three-dimensional optical lattices operating at the Stark-free wavelength, respectively. The temperature, number, and lifetime of cold 171 Yb atoms in one-dimensional lattice are measured. After optimization, the one-dimensional lattice with cold 171Yb atoms is used for developing an ytterbium optical clock. 展开更多
关键词 laser cooling and trapping optical lattices ytterbium atoms atomic optical clocks
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Laser Controlling Wavepacket Trains of a Paul Trapped Ion
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作者 CAI Li-Hua HAI Wen-Hua WU Yun-Wen 《Communications in Theoretical Physics》 SCIE CAS CSCD 2006年第6期1089-1096,共8页
We have studied the quantum and classical motions of a single Paul trapped ion interacting with a timeperiodic laser field. By using the test-function method, we construct n exact solutions of quantum dynamics that de... We have studied the quantum and classical motions of a single Paul trapped ion interacting with a timeperiodic laser field. By using the test-function method, we construct n exact solutions of quantum dynamics that describe the generalized squeezed coherent states with the expectation orbits being the corresponding classical ones. The spacetime evolutions of the exact probability densities show some wavepacket trains. It is demonstrated analytically that by adjusting the laser intensity and frequency, we can control the center motions of the wavepacket trains. We also discuss the other physical properties such as the expectation value of energy, the widths and heights of the wavepackets, and the resonance loss of stability. 展开更多
关键词 Paul trap single ion laser field wavepacket train
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便携式小型化磁光阱系统
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作者 丁会 高蓓 +4 位作者 苏殿强 姬中华 蒋源 马一飞 赵延霆 《激光技术》 北大核心 2025年第1期92-97,共6页
为了实现一种新型且简单的磁光阱(MOT)原子俘获,采用了大口径单光束和多个反射镜组合的方式来简化磁光阱结构,并用永磁体替代线圈提供所需的梯度磁场来增加冷原子俘获装置的便携性。分析了腔室内的偏振光和实验光路构成,并进行了实验验... 为了实现一种新型且简单的磁光阱(MOT)原子俘获,采用了大口径单光束和多个反射镜组合的方式来简化磁光阱结构,并用永磁体替代线圈提供所需的梯度磁场来增加冷原子俘获装置的便携性。分析了腔室内的偏振光和实验光路构成,并进行了实验验证;采用收集荧光法、及释放和再捕获的方法测得了在不同铷原子释放器电流下的原子数目和电流关闭后原子团寿命的变化。结果表明,俘获的^(87)Rb原子团的大小约为1.5 mm,冷原子数目大约为1.7×10^(7),原子团的温度约为177μK。该MOT结构可以在小型化的基础上实现理想的原子俘获,研究结果为新型量子传感器领域提供了参考。 展开更多
关键词 激光技术 小型化磁光阱 收集荧光法 ^(87)Rb原子 原子数目 原子温度
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Clock-transition spectrum of ^(171)Yb atoms in a one-dimensional optical lattice 被引量:2
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作者 陈宁 周敏 +8 位作者 陈海琴 方苏 黄良玉 张晓航 高琪 蒋燕义 毕志毅 马龙生 徐信业 《Chinese Physics B》 SCIE EI CAS CSCD 2013年第9期342-347,共6页
An optical atomic clock with 171yb atoms is devised and tested. By using a two-stage Doppler cooling technique, the 171Yb atoms are cooled down to a temperature of 6 ± 3 μK, which is close to the Doppler limit. ... An optical atomic clock with 171yb atoms is devised and tested. By using a two-stage Doppler cooling technique, the 171Yb atoms are cooled down to a temperature of 6 ± 3 μK, which is close to the Doppler limit. Then, the cold 171Yb atoms are loaded into a one-dimensional optical lattice with a wavelength of 759 nm in the Lamb-Dicke regime. Furthermore, these cold 171yb atoms are excited from the ground-state 1S0 to the excited-state 3P0 by a clock laser with a wavelength of 578 nm. Finally, the 1S0-3P0 clock-transition spectrum of these 171yb atoms is obtained by measuring the dependence of the population of the ground-state 1 S0 upon the clock-laser detuning. 展开更多
关键词 optical lattice clocks laser cooling and trapping YTTERBIUM clock-transition spectrum
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Ultrafast synthetic strategies under extreme heating conditions toward single-atom catalysts 被引量:1
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作者 Guanchao He Minmin Yan +2 位作者 Haisheng Gong Huilong Fei Shuangyin Wang 《International Journal of Extreme Manufacturing》 SCIE EI CAS 2022年第3期49-63,共15页
Dispersing atomic metals on substrates provides an ideal method to maximize metal utilization efficiency, which is important for the production of cost-effective catalysts and the atomic-level control of the electroni... Dispersing atomic metals on substrates provides an ideal method to maximize metal utilization efficiency, which is important for the production of cost-effective catalysts and the atomic-level control of the electronic structure. However, due to the high surface energy, individual single atoms tend to migrate and aggregate into nanoparticles during preparation and catalytic operation. In the past few years, various synthetic strategies based on ultrafast thermal activation toward the effective preparation of single-atom catalysts(SACs) have emerged, which could effectively solve the aggregation issue. Here, we highlight and summarize the latest developments in various ultrafast synthetic strategy with rapid energy input by heating shockwave and instant quenching for the synthesis of SACs, including Joule heating, microwave heating, solid-phase laser irradiation, flame-assisted method, arc-discharge method and so on,with special emphasis on how to achieve the uniform dispersion of single metal atoms at high metal loadings as well as the suitability for scalable production. Finally, we point out the advantages and disadvantages of the ultrafast heating strategies as well as the trends and challenges of future developments. 展开更多
关键词 ultrafast synthesis single atom catalysts extreme conditions Joule heating microwave heating laser irradiation
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Resonant Raman scattering in GaN single crystals and GaN-based heterostructures: feasibility for laser cooling 被引量:1
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作者 Yujie J. Ding Jacob B. Khurgin 《Chinese Optics Letters》 SCIE EI CAS CSCD 2013年第1期63-71,共9页
The recent progress on Raman scattering in GaN single crystals and GaN/A1N heterostructures is re- viewed. Anti-Stokes Raman scattering is used to determine electron-phonon scattering time and decay time constant for ... The recent progress on Raman scattering in GaN single crystals and GaN/A1N heterostructures is re- viewed. Anti-Stokes Raman scattering is used to determine electron-phonon scattering time and decay time constant for longitudinal-opticat phonons. In a typical high electron mobility transistor based on GaN/A1N heterostructures, strong resonances are reached for the first-order and second-order Raman scattering processes. Therefore, both Stokes and anti-Stokes Raman intensities are dramatically enhanced. The feasibility for laser cooling of a nitride structure is studied. A further optimization will enable us to reach the threshold for laser cooling. Raman scattering have potential applications in up-conversion lasers and laser cooling of nitride ultrafast electronic and optoelectronic devices. 展开更多
关键词 GAN RA Resonant Raman scattering in GaN single crystals and GaN-based heterostructures feasibility for laser cooling
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Comparison of single-neutral-atom qubit between in bright trap and in dark trap
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作者 Ya-Li Tian Zhi-Hui Wang +3 位作者 Peng-Fei Yang Peng-Fei Zhang Gang Li Tian-Cai Zhang 《Chinese Physics B》 SCIE EI CAS CSCD 2019年第2期192-196,共5页
A single neutral atom is one of the most promising candidates to encode a quantum bit(qubit). In a real experiment, a single neutral atom is always confined in a micro-sized far off-resonant optical trap(FORT). There ... A single neutral atom is one of the most promising candidates to encode a quantum bit(qubit). In a real experiment, a single neutral atom is always confined in a micro-sized far off-resonant optical trap(FORT). There are generally two types of traps: red-detuned trap and blue-detuned trap. We experimentally compare the qubits encoded in "clock states" of single cesium atoms confined separately in either 1064-nm red-detuned(bright) trap or 780-nm blue-detuned(dark) trap: both traps have almost the same trap depth. A longer lifetime of 117 s and a longer coherence time of about 10 ms are achieved in the dark trap. This provides a direct proof of the superiority of the dark trap over the bright trap. The measures to further improve the coherence are discussed. 展开更多
关键词 single QUBIT laser trapping coherence time
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Magneto optical trap for neutral mercury atoms
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作者 刘洪力 尹士奇 +4 位作者 刘亢亢 钱军 徐震 洪涛 王育竹 《Chinese Physics B》 SCIE EI CAS CSCD 2013年第4期32-35,共4页
Due to its low sensitivity to blackbody radiation, neutral mercury is a good candidate for the most accurate optical lattice clock. Here we report the observation of cold mercury atoms in a magneto-optical trap (MOT... Due to its low sensitivity to blackbody radiation, neutral mercury is a good candidate for the most accurate optical lattice clock. Here we report the observation of cold mercury atoms in a magneto-optical trap (MOT). Because of the high vapor pressure at room temperature, the mercury source and the cold pump were cooled down to 40℃ and 70 ℃, respectively, to keep the science chamber in an ultra-high vacuum of 6×10^-9 Pa. Limited by the power of the UV cooling laser, the one beam folded MOT configuration was adopted, and 1.5×10^5 Hg-202 atoms were observed by fluorescence detection. 展开更多
关键词 laser cooling and trapping neutral mercury atom laser spectroscopy
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Temperature and number evolution of cold cesium atoms inside a wall-coated glass cell
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作者 黄家强 张建伟 +2 位作者 王时光 王正博 王力军 《Chinese Physics B》 SCIE EI CAS CSCD 2015年第11期43-48,共6页
We report an experimental study on the temperature and number evolution of cold cesium atoms diffusively cooled inside a wall-coated glass cell by measuring the absorption profile of the 62S1/2 (F = 4) →62P3/2(F= ... We report an experimental study on the temperature and number evolution of cold cesium atoms diffusively cooled inside a wall-coated glass cell by measuring the absorption profile of the 62S1/2 (F = 4) →62P3/2(F= 5) transition line with a weak probe laser in the evolution process. We found that the temperature of the cold atoms first gradually decreases from 16 mK to 9 mK, and then rapidly increases. The number of cold atoms first declines slowly from 2.1 × 109 to 3.7×108 and then falls drastically. A theoretical model for the number evolution is built and includes the instantaneous temperature of the cold atoms and a fraction p, which represents the part of cold cesium atoms elastically reflected by the coated cell wall. The theory is overall in good agreement with the experimental result, and a nonzero value is obtained for the fraction p, which indicates that the cold cesium atoms are not all heated to the ambient temperature by a single collision with the coated cell wall. These results can provide helpful insight for precision measurements based on diffuse laser cooling. 展开更多
关键词 diffuse laser cooling laser spectroscopy atomic collision
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Quantum feedback cooling of two trapped ions
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作者 张硕 吴伟 +4 位作者 吴春旺 李风光 李坦 汪翔 鲍皖苏 《Chinese Physics B》 SCIE EI CAS CSCD 2017年第7期106-110,共5页
We present a sub-Doppler cooling scheme of a two-trapped-ion crystal by quantum feedback control method. In the scheme, we obtain the motional information by continuously measuring the spontaneous emission photons fro... We present a sub-Doppler cooling scheme of a two-trapped-ion crystal by quantum feedback control method. In the scheme, we obtain the motional information by continuously measuring the spontaneous emission photons from one single ion of the crystal, and then apply a feedback force to cool the whole chain down.We derive the cooling dynamics of the cooling scheme using quantum feedback theory and quantum regression theorem. The result shows that with experimentally achievable parameters, our scheme can achieve lower temperature and faster cooling rate than Doppler cooling. 展开更多
关键词 laser cooling trapped ion quantum optics
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基于二维磁光阱的增强型^(199)Hg冷原子团制备 被引量:1
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作者 余泽鑫 刘琪鑫 +1 位作者 孙剑芳 徐震 《物理学报》 SCIE EI CAS CSCD 北大核心 2024年第1期140-148,共9页
在精密测量领域中,高效地制备冷原子团具有重要的意义.在光晶格钟里,缩短冷原子团的制备时间可以降低Dick噪声,从而提高光晶格钟的稳定性.本文采用二维磁光阱加推送光的构型提高了三维磁光阱在超高真空环境中的装载率,并通过压缩磁光阱... 在精密测量领域中,高效地制备冷原子团具有重要的意义.在光晶格钟里,缩短冷原子团的制备时间可以降低Dick噪声,从而提高光晶格钟的稳定性.本文采用二维磁光阱加推送光的构型提高了三维磁光阱在超高真空环境中的装载率,并通过压缩磁光阱技术降低了原子团温度,实现了用于^(199)Hg光晶格钟的增强型冷原子团制备.实验上通过优化三维和二维磁光阱的失谐量和磁场梯度以及推送光的失谐量和功率等参数,将三维磁光阱的^(199)Hg冷原子装载率增强了51倍,提升至3.1×10^(5)s^(–1),然后使用压缩磁光阱技术将^(199)Hg冷原子团的温度降低至45μK,低于多普勒冷却理论温度.这种基于二维磁光阱的增强型冷原子团制备可在超真空环境下实现对三维磁光阱装载率的高增益,有效地缩短了冷原子团的制备时间,同时也降低了原子团的温度,有利于提高光晶格的转移效率,为其他冷原子实验中冷汞原子团制备提供了有效方案. 展开更多
关键词 汞原子 光晶格钟 激光冷却 二维磁光阱
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冷原子光栅磁光阱的研制及CPT信号的探询 被引量:1
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作者 朱雨濛 于治龙 +2 位作者 姚明昊 詹志明 刘小赤 《仪器仪表学报》 EI CAS CSCD 北大核心 2024年第2期120-128,共9页
相干布居囚禁原子钟在小型化方面具备不可替代的优势。由于热原子气室内部高压缓冲气体的限制,导致其频率稳定度仍有进一步提升的空间。利用激光冷却原子技术作为替代,可以有效提升其中长期性能。然而,目前的冷原子物理系统仍然相对复杂... 相干布居囚禁原子钟在小型化方面具备不可替代的优势。由于热原子气室内部高压缓冲气体的限制,导致其频率稳定度仍有进一步提升的空间。利用激光冷却原子技术作为替代,可以有效提升其中长期性能。然而,目前的冷原子物理系统仍然相对复杂,不利于原子钟整体系统的集成化和小型化。我们研制了高衍射效率光栅芯片、平面磁阱芯片以及微小型真空腔室,共同构建基于平面核心器件的磁光阱,利用单光束捕获冷原子2×106个。此外,为了简化CPT冷原子钟的激光系统,通过单激光结合时分复用系统的方式,仅用单一Rb D2线激光实现了原子冷却与CPT探询。以上的工作为将来实现微小型化高性能冷原子CPT钟的最终锁定和性能评估奠定了重要理论和技术基础。 展开更多
关键词 微波原子钟 相干布居囚禁 激光冷却 光栅芯片
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磁光阱技术研究现状及发展趋势
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作者 高望远 王骥 +4 位作者 肖玉华 张炯阳 陈江 刘志栋 涂建辉 《真空与低温》 2024年第6期680-690,共11页
磁光阱(MOT)作为激光冷却和陷俘原子的主要手段,在现代原子物理领域有着广泛应用。通过一对反亥姆霍兹线圈形成的磁阱和六束对射正交激光形成的光阱,将原子的温度冷却到接近绝对零度,可在很大程度上抑制原子的多普勒效应与碰撞效应带来... 磁光阱(MOT)作为激光冷却和陷俘原子的主要手段,在现代原子物理领域有着广泛应用。通过一对反亥姆霍兹线圈形成的磁阱和六束对射正交激光形成的光阱,将原子的温度冷却到接近绝对零度,可在很大程度上抑制原子的多普勒效应与碰撞效应带来的影响。相比于以热原子为工作介质的精密测量仪器,利用MOT技术研制的冷原子钟、冷原子干涉仪、冷原子加速度计等在性能上有大幅提升。阐述了MOT的基本原理及关键技术,综述了国内外MOT技术发展现状以及近年来在MOT性能提升方面开展的相关研究工作,分析总结了MOT技术发展趋势,主要包括小型化与微型化、大通量与高装载率以及参数智能优化等方面。 展开更多
关键词 磁光阱 精密测量 冷原子 激光冷却
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