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Physics / Fluorescence spectroscopy / Laser / Nitrogen laser / Quenching / Isaac Abella / Scintillator / Chemistry / Fluorescence / Spectroscopy


APS/123-QED Two-photon laser excitation of trapped 232
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Document Date: 2012-02-01 20:13:56


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City

Novosibirsk / Poznań / /

Company

Lawrence Livermore National Laboratory / /

Country

Poland / Russia / /

/

Facility

J. Rink / V. I. Yudin Institute of Laser Physics / Poznań University of Technology / Novosibirsk State University / /

IndustryTerm

energy levels / helium buffer gas pressure / lowest excitation energy / nitrogen buffer gas / diatomic buffer gas / background gas / classified energy levels / nm excitation beams using helium buffer gas / buffer gas atoms / kinetic energy / isomer energy / expected isomeric excitation energy / energy range / transition energy / Energy level system / lower-lying energy levels / buffer gas / gas helium argon nitrogen / excitation energy / helium buffer gas / electronic energy levels / energy level density / electronic energy level system / stainless-steel ultrahighvacuum chamber / argon buffer gas / ionization energy / energy difference / energy / /

Organization

Poznań University of Technology / Institute of Laser Physics / National Bureau of Standards / U.S. Securities and Exchange Commission / Novosibirsk State University / Novosibirsk / /

Person

S. G. Porsev / V / R. Churchill / C. A. Kilbourne / A. A. Madej / Leder / R. C. Thompson / V. A. Dzuba / V / /

Position

author / Prime Minister / F. S. Porter / /

ProvinceOrState

Pennsylvania / /

PublishedMedium

Laser Physics / Physica Scripta / /

Technology

radiation / laser / lasers / spectroscopy / frequency modulation / laser system / /

SocialTag