期刊文献+

应用变相法研究超冷镁原子的弹性散射特性 被引量:2

Variable phase method used to calculate the elastic scattering properties of ultracold Mg atoms
下载PDF
导出
摘要 本文基于参考文献[5]构建的精确的基态Mg_2的势能曲线,应用变相法对超冷温度下Mg原子的弹性散射特性进行了系统的研究.计算得到Mg原子碰撞的散射长度和有效力程分别为25.9a_0和191.3a_0,其中a_0是玻尔半径;低能极限下镁原子间的弹性碰撞主要为s-波碰撞,同时计算得到的基态Mg_2支持束缚态的数目为19.计算结果与文献[5]和Numerov法所得结果一致. The calculation of the elastic scattering properties of ultracold Mg atoms is reported in detail. We show how to reach the scattering length and the number of bound states via the variable phase method, based on the potential curve constructed in Ref. [5]. The scattering length and the effective range of the Mg2 ground state are 25.9 a0 and 191.3 a0 , where a0 is the Bohr radius. The collisions of two Mg atoms at ultralow temperatures are dominated by s-wave scattering. The number of bound states is 19. Our results are in agreement with the calculated results in Ref. [5] and the results calculated by the Numerov method.
出处 《原子与分子物理学报》 CAS CSCD 北大核心 2010年第1期87-91,共5页 Journal of Atomic and Molecular Physics
基金 国家自然科学基金(10874064) 河南省教育厅基础研究项目(2008A140007)
关键词 散射长度 Mg原子 变相法 scattering length, Mg atoms, the variable phase method
  • 相关文献

参考文献18

  • 1Weiner J,Bagnato V S,Zilio S et al.Experiments and theory in cold and ultracold collisions[J].Rev.Mod.Phys.,1999,71:1.
  • 2Ospelkaus C,Ospelkaus S.Heteronuclear quantum gas mixtures[J].J.Phys.B,2008,41:203001.
  • 3Jamieson M J,Cheung S C A,Ouerdane H,et al.S-wave scattering lengths and effective ranges for collisions of ground state Be atoms[J].J.Phys.B,2007,40:3497.
  • 4Ruschewitz F,Peng L,Hinderthur H,et al.Sub-kilohertz optical spectroscopy with a time domain atom interferometer[J].Phys.Rev.Lett.,1998,80:3173.
  • 5Tiesinga E,Kotochigova S,Julienne P S.Scattering length of the ground-state Mg+Mg collision[J].Phys.Rev.A,2002,65:042722.
  • 6Binnewies T,Wilpers G,Sterr U,et al.Doppler cooling and trapping on forbidden transitions[J].Phys.Rev.Lett.,2001,87:123002.
  • 7Allard O,Pashov A,Kn(o)ckel H.Ground-state potential of the Ca dimer from fourier-transform spectroscopy[J].Phys.Rev.A,2002,66:042503.
  • 8Katori H,Ido T,Isoya Y,et al.Magneto-optical trapping and cooling of strontium atoms down to the photon recoil temperature[J].Phys.Rev.Lett.,1999,82:1116.
  • 9Stein A,Knockel H,Tiemann E.Fourier-transform spectroscopy of Sr2 and revised ground-state potential[J].Phys.Rev.A,2008,78:042508.
  • 10Machholm M,Julienne P S,Suominen K A.Calculations of collisions between cold alkaline-earth-metal atoms in a weak laser field[J].Phys.Rev.A,2001,64:033425.

二级参考文献20

  • 1Weiner J,Bagnato V S,Zilio S,et al.Experiments and theory in cold and ultracold collisions[J].Rev.Mod.Phys,1999,71:1
  • 2Burnett K,Jullienne P S,Lett P D,et al.Quantum encounters of the cold kind[J].Nature,2002,416:225
  • 3Leggett A J.Bose-Einstein condensation in the alkali gases:some fundamental concepts[J].Rev.Mod.Phys,2001,73:307
  • 4DeMarco B,Jin D S.Onset of Fermi degeneracy in a trapped atomic gas[J].Science,1999,285:1703
  • 5Fatemi F K,Jones K M,Lett P D,et al.Ultracold ground-state molecule production in sodium[J].Phys.Rev.A,2002,66:053401
  • 6van Abeelen F A,Verhaar B J.Determination of collisional properties of cold Na atoms from analysis of bound-state photoassociation and Feshbach resonance field data[J].Phys.Rev.A,1999,59:578
  • 7Davis K B,Mewes M O,Andrews M R,et al.Bose-Einstein condensation in a gas of sodium atoms[J].Phys.Rev.Lett,1995,75:3969
  • 8Simos T E.Accurate computations for the elastic scattering phase-shift problem[J].Comput.Chem,1997,21:125
  • 9Blatt J M,Jackson J D.On the interpretation of neutron-proton scattering data by the schwinger variational method[J].Phys.Rev,1949,76:18
  • 10Gribakin G F,Flambaum V V.Calculation of the scattering length in atomic collisions using the semiclassical approximation[J].Phys.Rev.A,1993,48:546

共引文献1

同被引文献8

引证文献2

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