Matches in SemOpenAlex for { <https://semopenalex.org/work/W4328130581> ?p ?o ?g. }
- W4328130581 abstract "We build and characterize a dual-species all-optical magnetometer based on a Cs-K hybrid vapor cell with a paraffin coating. Using the amplitude-modulated Bell-Bloom scheme and Faraday-rotation measurement, we show that the spin polarization of Cs and K atoms can be generated and detected independently. The noise floor of the Cs channel is $35phantom{rule{0.2em}{0ex}}mathrm{fT}/sqrt{mathrm{Hz}}$, whereas that of the K channel is $260phantom{rule{0.2em}{0ex}}mathrm{fT}/sqrt{mathrm{Hz}}$, which is affected mainly by the magnetic resonance broadening in the presence of mutual spin-exchange collisions. With use of the proposed device, in situ magnetic field stabilization is realized by use of (i) the K channel to monitor and compensate for the magnetic field noise and (ii) the Cs channel to read out the magnetic field after active stabilization. The low-frequency magnetic field noise can be suppressed by a factor of more than $1000$ in the presence of magnetic field gradients. When applied to magnetic field stabilization, such in situ measurement is achieved more compactly and is more accurate than ex situ measurement that is realized with two spatially separated vapor cells. In addition, the proposed scheme could also be applied in a practical ground-surveying magnetometer based on dual working species." @default.
- W4328130581 created "2023-03-22" @default.
- W4328130581 creator A5044716117 @default.
- W4328130581 creator A5047833818 @default.
- W4328130581 creator A5055720935 @default.
- W4328130581 creator A5059086113 @default.
- W4328130581 creator A5067202795 @default.
- W4328130581 creator A5075998039 @default.
- W4328130581 date "2023-03-21" @default.
- W4328130581 modified "2023-10-16" @default.
- W4328130581 title "Dual-Species All-Optical Magnetometer Based on a Cs-K Hybrid Vapor Cell" @default.
- W4328130581 cites W1504195407 @default.
- W4328130581 cites W1551694228 @default.
- W4328130581 cites W1573363899 @default.
- W4328130581 cites W1963919378 @default.
- W4328130581 cites W1966555826 @default.
- W4328130581 cites W1970047191 @default.
- W4328130581 cites W1984423917 @default.
- W4328130581 cites W1984823331 @default.
- W4328130581 cites W1998320990 @default.
- W4328130581 cites W2004892861 @default.
- W4328130581 cites W2007602039 @default.
- W4328130581 cites W2008359234 @default.
- W4328130581 cites W2020432985 @default.
- W4328130581 cites W2023798907 @default.
- W4328130581 cites W2024874141 @default.
- W4328130581 cites W2025212500 @default.
- W4328130581 cites W2027716314 @default.
- W4328130581 cites W2032402010 @default.
- W4328130581 cites W2036260977 @default.
- W4328130581 cites W2038276896 @default.
- W4328130581 cites W2043206513 @default.
- W4328130581 cites W2054569931 @default.
- W4328130581 cites W2055536451 @default.
- W4328130581 cites W2062158461 @default.
- W4328130581 cites W2066290900 @default.
- W4328130581 cites W2073178693 @default.
- W4328130581 cites W2075706421 @default.
- W4328130581 cites W2077767829 @default.
- W4328130581 cites W2091462262 @default.
- W4328130581 cites W2110878068 @default.
- W4328130581 cites W2118334283 @default.
- W4328130581 cites W2149817366 @default.
- W4328130581 cites W2215808494 @default.
- W4328130581 cites W2256333395 @default.
- W4328130581 cites W3035564083 @default.
- W4328130581 cites W3046171984 @default.
- W4328130581 cites W3047322357 @default.
- W4328130581 cites W3099455653 @default.
- W4328130581 cites W3105483285 @default.
- W4328130581 cites W3157065431 @default.
- W4328130581 cites W3163081126 @default.
- W4328130581 cites W3177220321 @default.
- W4328130581 cites W3194711825 @default.
- W4328130581 cites W3200647523 @default.
- W4328130581 cites W4206506792 @default.
- W4328130581 cites W4235425095 @default.
- W4328130581 cites W4251607950 @default.
- W4328130581 cites W2089348086 @default.
- W4328130581 doi "https://doi.org/10.1103/physrevapplied.19.034066" @default.
- W4328130581 hasPublicationYear "2023" @default.
- W4328130581 type Work @default.
- W4328130581 citedByCount "3" @default.
- W4328130581 countsByYear W43281305812023 @default.
- W4328130581 crossrefType "journal-article" @default.
- W4328130581 hasAuthorship W4328130581A5044716117 @default.
- W4328130581 hasAuthorship W4328130581A5047833818 @default.
- W4328130581 hasAuthorship W4328130581A5055720935 @default.
- W4328130581 hasAuthorship W4328130581A5059086113 @default.
- W4328130581 hasAuthorship W4328130581A5067202795 @default.
- W4328130581 hasAuthorship W4328130581A5075998039 @default.
- W4328130581 hasConcept C108948954 @default.
- W4328130581 hasConcept C113196181 @default.
- W4328130581 hasConcept C115260700 @default.
- W4328130581 hasConcept C115961682 @default.
- W4328130581 hasConcept C120665830 @default.
- W4328130581 hasConcept C121332964 @default.
- W4328130581 hasConcept C147789679 @default.
- W4328130581 hasConcept C153946474 @default.
- W4328130581 hasConcept C154945302 @default.
- W4328130581 hasConcept C184779094 @default.
- W4328130581 hasConcept C185592680 @default.
- W4328130581 hasConcept C205049153 @default.
- W4328130581 hasConcept C207230154 @default.
- W4328130581 hasConcept C26873012 @default.
- W4328130581 hasConcept C41008148 @default.
- W4328130581 hasConcept C43617362 @default.
- W4328130581 hasConcept C46141821 @default.
- W4328130581 hasConcept C62520636 @default.
- W4328130581 hasConcept C99498987 @default.
- W4328130581 hasConceptScore W4328130581C108948954 @default.
- W4328130581 hasConceptScore W4328130581C113196181 @default.
- W4328130581 hasConceptScore W4328130581C115260700 @default.
- W4328130581 hasConceptScore W4328130581C115961682 @default.
- W4328130581 hasConceptScore W4328130581C120665830 @default.
- W4328130581 hasConceptScore W4328130581C121332964 @default.
- W4328130581 hasConceptScore W4328130581C147789679 @default.
- W4328130581 hasConceptScore W4328130581C153946474 @default.
- W4328130581 hasConceptScore W4328130581C154945302 @default.
- W4328130581 hasConceptScore W4328130581C184779094 @default.