The polarization and the fundamental sensitivity of 39K (133Cs)-85Rb-4He hybrid optical pumping spin exchange relaxation free atomic magnetometers
The hybrid optical pumping spin exchange relaxation free (SERF) atomic magnetometers can realize ultrahigh sensitivity measurement of magnetic field and inertia. We have studied the 85 Rb polarization of two types of hybrid optical pumping SERF magnetometers based on 39 K- 85 Rb- 4 He and 133 Cs- 85...
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Veröffentlicht in: | Scientific reports 2017-07, Vol.7 (1), p.1-14, Article 6776 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The hybrid optical pumping spin exchange relaxation free (SERF) atomic magnetometers can realize ultrahigh sensitivity measurement of magnetic field and inertia. We have studied the
85
Rb polarization of two types of hybrid optical pumping SERF magnetometers based on
39
K-
85
Rb-
4
He and
133
Cs-
85
Rb-
4
He respectively. Then we found that
85
Rb polarization varies with the number density of buffer gas
4
He and quench gas N
2
, pumping rate of pump beam and cell temperature respectively, which will provide an experimental guide for the design of the magnetometer. We obtain a general formula on the fundamental sensitivity of the hybrid optical pumping SERF magnetometer due to shot-noise. The formula describes that the fundamental sensitivity of the magnetometer varies with the number density of buffer gas and quench gas, the pumping rate of pump beam, external magnetic field, cell effective radius, measurement volume, cell temperature and measurement time. We obtain a highest fundamental sensitivity of 1.5073
aT
/
Hz
1/2
(1
aT
= 10
−18
T
) with
39
K-
85
Rb-
4
He magnetometer between above two types of magnetometers when
85
Rb polarization is 0.1116. We estimate the fundamental sensitivity limit of the hybrid optical pumping SERF magnetometer to be superior to 1.8359 × 10
−2
aT
/
Hz
1/2
, which is higher than the shot-noise-limited sensitivity of 1
aT
/
Hz
1/2
of K SERF atomic magnetometer. |
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ISSN: | 2045-2322 2045-2322 |
DOI: | 10.1038/s41598-017-06434-2 |