期刊文献+

Theoretical study of slowing supersonic CH_3F molecular beams using electrostatic Stark decelerator

Theoretical study of slowing supersonic CH_3F molecular beams using electrostatic Stark decelerator
下载PDF
导出
摘要 We have calculated the Stark effect of CH3F molecules in external electrical fields, the rotational population of supersonic CH3F molecules in different quantum states, and analyse the motion of weak-field-seeking CH3F molecules in a st'ate |J = 1, KM = -1) inside the electrical field of a Stark decelerator by using a simple analytical model. Threedimensional Monte Carlo simulation is performed to simulate the dynamical slowing process of molecules through the decelerator, and the results are compared with those obtained from the analytical model, including the phase stability, slowing efficiency as well as the translational temperature of the slowed molecular packet. Our study shows that with a modest dipole moment (-1.85 Debye) and a relatively slight molecular weight (-34.03), CH3F molecules in a state |J= 1, KM = -1) are a good candidate for slowing with electrostatic field. With high voltages of ±10 kV applied on the decelerator, molecules of 370 m/s can be brought to a standstill within 200 slowing stages. We have calculated the Stark effect of CH3F molecules in external electrical fields, the rotational population of supersonic CH3F molecules in different quantum states, and analyse the motion of weak-field-seeking CH3F molecules in a st'ate |J = 1, KM = -1) inside the electrical field of a Stark decelerator by using a simple analytical model. Threedimensional Monte Carlo simulation is performed to simulate the dynamical slowing process of molecules through the decelerator, and the results are compared with those obtained from the analytical model, including the phase stability, slowing efficiency as well as the translational temperature of the slowed molecular packet. Our study shows that with a modest dipole moment (-1.85 Debye) and a relatively slight molecular weight (-34.03), CH3F molecules in a state |J= 1, KM = -1) are a good candidate for slowing with electrostatic field. With high voltages of ±10 kV applied on the decelerator, molecules of 370 m/s can be brought to a standstill within 200 slowing stages.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2009年第1期149-156,共8页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China (Grant Nos 10374029,10434060 and 10674047) the National Key Basic Research and Development Program of China (Grant No 2006CB921604) the Basic Key Program of Shanghai Municipality of China (Grant No 07JC14017) the Program for Changjiang Scholar and Innovative Research Team the Shanghai Leading Academic Discipline Project of China (Grant No B408)
关键词 molecular beam stark effect stark decelerator molecular beam, stark effect, stark decelerator
  • 相关文献

参考文献24

  • 1Jongma R T, Rasing T and Meijer Q 1995 J. Chem. Phys. 102 1925
  • 2Harland P W, Hu W P and Vallance C 1999 Phys. Rev. A 60 3138
  • 3Loesch H J and Scheel B 2000 Phys. Rev. Lett. 85 2709
  • 4Junglen T, Rieger T, Pinkse P W H and Rempe G 2004 Phys. Rev. Lett. 92 223001
  • 5Xia Y, Yin Y, Chen H, Deng L and Yin J 2008 Phys. Rev. Lett. 100 043003
  • 6Deng L, Xia Y and Yin J 2007 Chin. Phys. 16 707
  • 7Deng L and Yin J 2007 Opt. Lett. 32 1695
  • 8Bethlem H L, Berden G and Meijer G 1999 Phys. Rev. Lett. 83 1558
  • 9Bethlem H L, Berden G, Crompvoets F M H, Jongma R T, van Roij A J A and Meijer G 2000 Nature 406 491
  • 10Bochinski J R, Hudson E R, Lewandowski H J, Meijer G and Ye J 2003 Phys. Rev. Lett. 91 243001

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部