Polarisation-dependent optical pumping for interrogation of a magnetic-field-independent clock transition in laser-cooled trapped 87Sr+
被引:24
作者:
Boshier, M.G.
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机构:Sussex Ctr. Optical and Atom. Phys., Physics Department, University of Sussex, Falmer, Brighton, BN1 9QH, United Kingdom
Boshier, M.G.
Barwood, G.P.
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机构:Sussex Ctr. Optical and Atom. Phys., Physics Department, University of Sussex, Falmer, Brighton, BN1 9QH, United Kingdom
Barwood, G.P.
Huang, G.
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机构:Sussex Ctr. Optical and Atom. Phys., Physics Department, University of Sussex, Falmer, Brighton, BN1 9QH, United Kingdom
Huang, G.
Klein, H.A.
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机构:Sussex Ctr. Optical and Atom. Phys., Physics Department, University of Sussex, Falmer, Brighton, BN1 9QH, United Kingdom
Klein, H.A.
机构:
[1] Sussex Ctr. Optical and Atom. Phys., Physics Department, University of Sussex, Falmer, Brighton, BN1 9QH, United Kingdom
[2] National Physical Laboratory, Teddington, Middlesex, TW11 0LW, United Kingdom
来源:
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2000年
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Springer Verlag卷
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71期
关键词:
D O I:
10.1007/s003400050074
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摘要:
We discuss the prospect of using the 87Sr+ ion as an optical frequency standard. The ion offers a narrow electric quadrupole clock transition which has no first-order Zeeman shifts, and the required wavelengths can be generated with convenient solid-state laser systems. We describe how to cool and probe the ion in zero magnetic field by employing polarisation modulation of the cooling light to avoid coherent population trapping in dark states. The polarisation modulation scheme also provides optical pumping of the ion into the initial state of the narrow clock transition.