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Nonlinear effects in optical pumping of a cold and slow atomic beam

  • N. Porfido
  • , N. N. Bezuglov
  • , M. Bruvelis
  • , G. Shayeganrad
  • , S. Birindelli
  • , F. Tantussi
  • , I. Guerri
  • , M. Viteau
  • , A. Fioretti
  • , D. Ciampini
  • , M. Allegrini
  • , D. Comparat
  • , E. Arimondo
  • , A. Ekers
  • , F. Fuso
  • University of Pisa
  • ASML Netherlands BV
  • St. Petersburg State University
  • St. Petersburg National Research University of Information Technologies, Mechanics and Optics (ITMO)
  • University of Latvia
  • TU Dortmund University
  • Eindhoven University of Technology
  • Italian Institute of Technology
  • Orsay Physics
  • National Research Council of Italy
  • Consorzio Nazionale Interuniversitario per le Scienze Fisiche della Materia, CNISM, Sezione di Pisa
  • Laboratoire Aimé Cotton
  • King Abdullah University of Science and Technology

Zinātniskās darbības rezultāts: Devums žurnālamZinātniskais raksts (žurnālā)koleģiāli recenzēts

15 Atsauces (Scopus)

Kopsavilkums

By photoionizing hyperfine (HF) levels of the Cs state 62P3/2 in a slow and cold atom beam, we find how their population depends on the excitation laser power. The long time (around 180μs) spent by the slow atoms inside the resonant laser beam is large enough to enable exploration of a unique atom-light interaction regime heavily affected by time-dependent optical pumping. We demonstrate that, under such conditions, the onset of nonlinear effects in the population dynamics and optical pumping occurs at excitation laser intensities much smaller than the conventional respective saturation values. The evolution of population within the HF structure is calculated by numerical integration of the multilevel optical Bloch equations. The agreement between numerical results and experiment outcomes is excellent. All main features in the experimental findings are explained by the occurrence of "dark" and "bright" resonances leading to power-dependent branching coefficients.

OriģinālvalodaAngļu
Raksta numurs043408
ŽurnālsPhysical Review A - Atomic, Molecular, and Optical Physics
Sējums92
Izdevuma numurs4
DOIs
Publikācijas statussPublicēts - 12 okt. 2015
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