Optical frequency measurements of 6s 2S1/2-6p 2P1/2 (D1) transitions in 133Cs and their impact on the fine-structure constant

被引:89
作者
Gerginov, V [1 ]
Calkins, K
Tanner, CE
McFerran, JJ
Diddams, S
Bartels, A
Hollberg, L
机构
[1] Univ Notre Dame, Dept Phys, Notre Dame, IN 46556 USA
[2] Univ Western Australia, Sch Phys, Nedlands, WA 6009, Australia
[3] NIST, Tune & Frequency Div, Boulder, CO 80305 USA
来源
PHYSICAL REVIEW A | 2006年 / 73卷 / 03期
关键词
D O I
10.1103/PhysRevA.73.032504
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
High resolution laser spectroscopy of the 6s S-2(1/2)-> 6p P-2(1/2) transition (D-1 line) in neutral Cs-133 is performed in a highly collimated thermal atomic beam by use of a femtosecond laser frequency comb and narrow-linewidth diode laser. The diode laser is offset locked to a single frequency component of the femtosecond laser frequency comb and probes the optical transitions between selected pairs of ground-state and excited-state hyperfine components. A photodiode detects the excited-state decay fluorescence, and a computerized data acquisition system records the signal. The Doppler shift is eliminated by orienting the laser beam in a direction perpendicular to the atomic beam to within a precision of 5x10(-6) rad. Optical frequencies for all four pairs of hyperfine components are measured independently, from which the D-1 line centroid and excited-state hyperfine splitting are obtained by least-squares minimization with the ground-state splitting as a fixed constraint. We find the D-1 line centroid to be f(D1)=335 116 048 748.1(2.4) kHz, and the 6p P-2(1/2) state hyperfine splitting to be 1 167 723.6(4.8) kHz. These results, in combination with the results of an atom interferometry experiment by Wicht [Phys. Scripta T 102, 82 (2002)], are used to calculate a new value for the fine-structure constant.
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页码:1 / 10
页数:10
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共 32 条
[11]   Optical frequency measurements of 6s 2S1/2-6p 2P3/2 transition in a 133Cs atomic beam using a femtosecond laser frequency comb -: art. no. 042505 [J].
Gerginov, V ;
Tanner, CE ;
Diddams, S ;
Bartels, A ;
Hollberg, L .
PHYSICAL REVIEW A, 2004, 70 (04) :042505-1
[12]   Fluorescence of a highly collimated atomic cesium beam: theory and experiment [J].
Gerginov, V ;
Tanner, CE .
OPTICS COMMUNICATIONS, 2003, 222 (1-6) :17-28
[13]   Heterodyne frequency calibration of high resolution cesium spectra using diode lasers [J].
Gerginov, V ;
Tanner, CE .
OPTICS COMMUNICATIONS, 2003, 216 (4-6) :391-399
[14]   SPECTROSCOPY OF ATOMS AND MOLECULES IN GASES - CORRECTIONS TO THE DOPPLER-RECOIL SHIFT [J].
HAUGAN, MP ;
KOWALSKI, FV .
PHYSICAL REVIEW A, 1982, 25 (04) :2102-2112
[15]   Optical frequency standard based on cold Ca atoms [J].
Helmcke, J ;
Wilpers, G ;
Binnewies, T ;
Degenhardt, C ;
Sterr, U ;
Schnatz, H ;
Riehle, F .
IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT, 2003, 52 (02) :250-254
[16]   Accuracy evaluation of NIST-F1 [J].
Jefferts, SR ;
Shirley, J ;
Parker, TE ;
Heavner, TP ;
Meekhof, DM ;
Nelson, C ;
Levi, F ;
Costanzo, G ;
De Marchi, A ;
Drullinger, R ;
Hollberg, L ;
Lee, WD ;
Walls, FL .
METROLOGIA, 2002, 39 (04) :321-336
[17]   Carrier-envelope phase control of femtosecond mode-locked lasers and direct optical frequency synthesis [J].
Jones, DJ ;
Diddams, SA ;
Ranka, JK ;
Stentz, A ;
Windeler, RS ;
Hall, JL ;
Cundiff, ST .
SCIENCE, 2000, 288 (5466) :635-639
[18]   United time-frequency spectroscopy for dynamics and global structure [J].
Marian, A ;
Stowe, MC ;
Lawall, JR ;
Felinto, D ;
Ye, J .
SCIENCE, 2004, 306 (5704) :2063-2068
[19]   CODATA recommended values of the fundamental physical constants: 2002 [J].
Mohr, PJ ;
Taylor, BN .
REVIEWS OF MODERN PHYSICS, 2005, 77 (01) :1-107
[20]   Absolute frequency measurements of the 23S1→23P0,1,2 atomic helium transitions around 1083 nm -: art. no. 023001 [J].
Pastor, PC ;
Giusfredi, G ;
De Natale, P ;
Hagel, G ;
de Mauro, C ;
Inguscio, M .
PHYSICAL REVIEW LETTERS, 2004, 92 (02) :4