Precision measurement based on ultracold atoms and cold molecules

被引:0
|
作者
Ye, Jun [1 ]
Blatt, Sebastian
Boyd, Martin M.
Foreman, Seth M.
Hudson, Eric R.
Ido, Tetsuya
Lev, Benjamin
Ludlow, Andrew D.
Sawyer, Brian C.
Stuhl, Benjamin
Zelevinsky, Tanya
机构
[1] Natl Inst Stand & Technol, JILA, 325 Broadway, Boulder, CO 80309 USA
来源
ATOMIC PHYSICS 20 | 2006年 / 869卷
关键词
coherent interactions; optical lattice; frequency comb; optical atomic clocks; cold molecules; precision measurement;
D O I
暂无
中图分类号
O64 [物理化学(理论化学)、化学物理学]; O56 [分子物理学、原子物理学];
学科分类号
070203 ; 070304 ; 081704 ; 1406 ;
摘要
Ultracold atoms and molecules provide ideal stages for precision tests of fundamental physics. With microkelvin neutral strontium atoms confined in an optical lattice, we have achieved a fractional resolution of 4 x 10-(15) on the S-1(0)-P-3(0) doubly-forbidden Sr-87 clock transition at 698 mn. The overall systematic uncertainty of the clock is evaluated below the 10(-15) level. The ultrahigh spectral resolution permits resolving the nuclear spin states of the clock transition at small magnetic fields, leading to measurements of the P-3(0) magnetic moment and metastable lifetime. In addition, photoassociation spectroscopy performed on the narrow S-1(0) - P-3(1) transition of Sr-88 shows promise for efficient optical tuning of the ground state scattering length and production of ultracold ground-state molecules. Lattice-confined Sr-2 molecules are suitable for constraining the time-variation of electron-proton mass ratio. In a separate experiment, cold, ground state polar molecules produced from Stark decelerators have enabled an order of magnitude improvement in measurement precision of ground-state, A-doublet microwave transitions in the OH molecule. Comparing the laboratory results to those from OH megamasers in interstellar space will allow a sensitivity of 10(-6) for measuring the potential time variation of the fundamental fine structure constant Delta alpha/alpha over 10(10) years. These results have also led to improved understandings in the molecular structure. The study of the low magnetic field behavior of OH in its (2)Pi(3/2) ro-vibronic ground state precisely determines a differential Lande g-factor between opposite parity components of the A-doublet.
引用
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页码:80 / +
页数:3
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