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Experimental Determination of the Landé g-Factors for 5s^2 ^1S and 5s5p ^3P States of the ^87Sr Atom
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作者 卢本全 王叶兵 +4 位作者 郭阳 徐琴芳 尹默娟 李冀光 常宏 《Chinese Physics Letters》 SCIE CAS CSCD 2018年第4期30-34,共5页
We present an experimental determination on the Lande g-factors for the 5 s^2 ^1 S0 and 5 s5 p ^3P0 states in ultra-cold atomic systems, which is important for evaluating the Zeeman shift of the clock transition in th... We present an experimental determination on the Lande g-factors for the 5 s^2 ^1 S0 and 5 s5 p ^3P0 states in ultra-cold atomic systems, which is important for evaluating the Zeeman shift of the clock transition in the ^87Sr optical lattice clock. The Zeeman shift of the 5 s5 p ^3 P0-5 s^2 ^1 S0 forbidden transition is measured with the π-polarized and σ^±-polarized interrogations at different magnetic field strengths. Moreover, in the g-factor measurement with the σ^±-transition spectra, it is unnecessary to calibrate the external magnetic field. By this means, the ground state 5 s^2 ^1 S0 g-factor for the ^87Sr atom is-1.306(52) ×10^-4, which is the first experimental determination to the best of our knowledge, and the result matches very well with the theoretical estimation. The differential g-factorδg between the 5 s5 p^3 P0 state and the 5 s^2 ^1 S0 state of the ^87Sr atoms is measured in the experiment as well,which are-7.67(36) ×10^-5 with π-transition spectra and-7.72(43) X 10^-5 with σ^±-transition spectra, in good agreement with the previous report [Phys. Rev. A 76(2007) 022510]. This work can also be used for determining the differential g-factor of the clock states for the optical clocks based on other atoms. 展开更多
关键词 Sr Atom and 5s5p g-Factors for 5s~2 Experimental Determination of the Land States of the
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Influence of water content on the inactivation of P. digitatum spores using an air–water plasma jet
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作者 胡友谊 朱卫东 +3 位作者 刘坤 韩冷 郑振峰 胡慧敏 《Plasma Science and Technology》 SCIE EI CAS CSCD 2018年第4期71-77,共7页
In order to investigate whether an air–water plasma jet is beneficial to improve the efficiency of inactivation, a series of experiments were done using a ring-needle plasma jet. The water content in the working gas... In order to investigate whether an air–water plasma jet is beneficial to improve the efficiency of inactivation, a series of experiments were done using a ring-needle plasma jet. The water content in the working gas(air) was accurately measured based on the Karl Fischer method. The effects of water on the production of OH(A;Σ;–X;Π;) and O(3p;P–3s;S) were also studied by optical emission spectroscopy. The results show that the water content is in the range of 2.53–9.58 mg l;, depending on the gas/water mixture ratio. The production of OH(A;Σ;–X;Π;) rises with the increase of water content, whereas the O(3p;P–3s;S) shows a declining tendency with higher water content. The sterilization experiments indicate that this air–water plasma jet inactivates the P. digitatum spores very effectively and its efficiency rises with the increase of the water content. It is possible that OH(A;Σ;–X;Π;) is a more effective species in inactivation than O(3p;P–3s;S) and the water content benefit the spore germination inhibition through rising the OH(A;Σ;–X;Π;) production. The maximum of the inactivation efficacy is up to 93% when the applied voltage is -6.75 kV and the water content is 9.58 mg l;. 展开更多
关键词 air–water plasma jet water content inactivation efficiency P. digitatum spores OH(A2Σ+–X2Πi) O(3p5P–3s5S)
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High-Resolution Stark Spectroscopy of Ba Highly-Excited States by Diode Laser Technique
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作者 Cheng Li Hiroumi Ito +2 位作者 Masayuki Kawamura Tatsuya Minowa Weiguo Jin 《Optics and Photonics Journal》 2016年第8期37-40,共4页
High-resolution atomic-beam laser spectroscopy has been performed to study Stark effect of Ba atom. Stark spectra have been observed at various electric fields for Ba highly excited states. The scalar polarizability o... High-resolution atomic-beam laser spectroscopy has been performed to study Stark effect of Ba atom. Stark spectra have been observed at various electric fields for Ba highly excited states. The scalar polarizability of the transition from 6s5d3D2 to 5d6p3F3 at 728.0 nm and the tensor polarizability of the 3F3 level have been determined for the first time, to be αs = -89.8 (12) kHz/(kV/cm)2 and αt = -133.7 (20) kHz/(kV/cm)2, respectively. 展开更多
关键词 Stark Effect Scalar and Tensor Polarizabilities Ba Atom 6s5d3D2 - 5d6p3f3 Transition High Resolution Laser Spectroscopy
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