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Positronium Laser Cooling via the 1^{3}S-2^{3}P Transition with a Broadband Laser Pulse.

Authors :
Glöggler LT
Gusakova N
Rienäcker B
Camper A
Caravita R
Huck S
Volponi M
Wolz T
Penasa L
Krumins V
Gustafsson FP
Comparat D
Auzins M
Bergmann B
Burian P
Brusa RS
Castelli F
Cerchiari G
Ciuryło R
Consolati G
Doser M
Graczykowski Ł
Grosbart M
Guatieri F
Haider S
Janik MA
Kasprowicz G
Khatri G
Kłosowski Ł
Kornakov G
Lappo L
Linek A
Malamant J
Mariazzi S
Petracek V
Piwiński M
Pospíšil S
Povolo L
Prelz F
Rangwala SA
Rauschendorfer T
Rawat BS
Rodin V
Røhne OM
Sandaker H
Smolyanskiy P
Sowiński T
Tefelski D
Vafeiadis T
Welsch CP
Zawada M
Zielinski J
Zurlo N
Source :
Physical review letters [Phys Rev Lett] 2024 Feb 23; Vol. 132 (8), pp. 083402.
Publication Year :
2024

Abstract

We report on laser cooling of a large fraction of positronium (Ps) in free flight by strongly saturating the 1^{3}S-2^{3}P transition with a broadband, long-pulsed 243 nm alexandrite laser. The ground state Ps cloud is produced in a magnetic and electric field-free environment. We observe two different laser-induced effects. The first effect is an increase in the number of atoms in the ground state after the time Ps has spent in the long-lived 2^{3}P states. The second effect is one-dimensional Doppler cooling of Ps, reducing the cloud's temperature from 380(20) to 170(20) K. We demonstrate a 58(9)% increase in the fraction of Ps atoms with v_{1D}<3.7×10^{4}  ms^{-1}.

Details

Language :
English
ISSN :
1079-7114
Volume :
132
Issue :
8
Database :
MEDLINE
Journal :
Physical review letters
Publication Type :
Academic Journal
Accession number :
38457696
Full Text :
https://doi.org/10.1103/PhysRevLett.132.083402