Simulation of a strong van der Waals blockade in a dense ultracold gas

被引:13
|
作者
Hernandez, J. V. [1 ]
Robicheaux, F. [1 ]
机构
[1] Auburn Univ, Dept Phys, Auburn, AL 36849 USA
关键词
D O I
10.1088/0953-4075/41/4/045301
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
We report on simulations involving the blockade effect on a dense ultracold gas. The blockade effect is seen when the interaction energy between two excited Rydberg atoms is large enough to shift the two-excitation state out of resonance. In this paper we investigate a system that exhibits a strong van der Waals blockade, where only one out of thousands of atoms can be excited per blockade volume. With such a high number of atoms blockaded, the collective oscillation rate of an ensemble of atoms is much faster than the single atom oscillation rate. We examine the effects of this high density and the effects of a non-uniform density distribution as commonly seen in a magneto-optical trap (MOT). We use three different models and compare them to recent experimental data. The agreement between theory and experiment, although qualitative, suggests that the non-uniformity of the density within a blockade region presents a new challenge to theoretical models.
引用
收藏
页数:6
相关论文
共 50 条
  • [21] On the van der Waals gas flow in a thermal jet
    V. G. Gasenko
    V. E. Nakoryakov
    Journal of Engineering Thermophysics, 2014, 23 : 270 - 279
  • [22] On the van der Waals gas flow in a thermal jet
    Gasenko, V. G.
    Nakoryakov, V. E.
    JOURNAL OF ENGINEERING THERMOPHYSICS, 2014, 23 (04) : 270 - 279
  • [23] The van der Waals Theory of Capillarity and Computer Simulation
    V. G. Baidakov
    G. Sh. Boltachev
    S. P. Protsenko
    G. G. Chernykh
    Colloid Journal, 2002, 64 : 661 - 670
  • [24] Evolution of weak discontinuity in a van der Waals gas
    Bira, B.
    Sekhar, T. Raja
    AIN SHAMS ENGINEERING JOURNAL, 2015, 6 (03) : 1129 - 1132
  • [25] Van der Waals gas model for potassium in tungsten
    Nagy, A
    INTERNATIONAL JOURNAL OF REFRACTORY METALS & HARD MATERIALS, 1998, 16 (01): : 45 - 49
  • [26] Heat Transfer Problem in a Van Der Waals Gas
    Barbera, Elvira
    Brini, Francesca
    Sugiyama, Masaru
    ACTA APPLICANDAE MATHEMATICAE, 2014, 132 (01) : 41 - 50
  • [27] The van der Waals theory of capillarity and computer simulation
    Baidakov, VG
    Boltachev, GS
    Protsenko, SP
    Chernykh, GG
    COLLOID JOURNAL, 2002, 64 (06) : 661 - 670
  • [28] The van der Waals Hexaquark Chemical Potential in Dense Stellar Matter
    Andrew, Keith
    Steinfelds, Eric V.
    Andrew, Kristopher A.
    PARTICLES, 2023, 6 (02) : 556 - 567
  • [29] Efimov-van der Waals universality for ultracold atoms with positive scattering lengths
    Mestrom, Paul M. A.
    Wang, Jia
    Greene, Chris H.
    D'Incao, Jose P.
    PHYSICAL REVIEW A, 2017, 95 (03)
  • [30] van der Waals coefficients for systems with ultracold polar alkali-metal molecules
    Zuchowski, P. S.
    Kosicki, M.
    Kodrycka, M.
    Soldan, P.
    PHYSICAL REVIEW A, 2013, 87 (02):