Entanglement of orbital angular momentum states between an ensemble of cold atoms and a photon

2006 ◽  
Vol 74 (5) ◽  
Author(s):  
R. Inoue ◽  
N. Kanai ◽  
T. Yonehara ◽  
Y. Miyamoto ◽  
M. Koashi ◽  
...  
Author(s):  
Chengyuan Wang ◽  
Ya Yu ◽  
Yun Chen ◽  
Mingtao Cao ◽  
Jinwen Wang ◽  
...  

Author(s):  
Sonja Franke-Arnold

Any coherent interaction of light and atoms needs to conserve energy, linear momentum and angular momentum. What happens to an atom’s angular momentum if it encounters light that carries orbital angular momentum (OAM)? This is a particularly intriguing question as the angular momentum of atoms is quantized, incorporating the intrinsic spin angular momentum of the individual electrons as well as the OAM associated with their spatial distribution. In addition, a mechanical angular momentum can arise from the rotation of the entire atom, which for very cold atoms is also quantized. Atoms therefore allow us to probe and access the quantum properties of light’s OAM, aiding our fundamental understanding of light–matter interactions, and moreover, allowing us to construct OAM-based applications, including quantum memories, frequency converters for shaped light and OAM-based sensors. This article is part of the themed issue ‘Optical orbital angular momentum’.


2014 ◽  
Vol 117 (4) ◽  
pp. 1123-1128 ◽  
Author(s):  
R. A. de Oliveira ◽  
L. Pruvost ◽  
P. S. Barbosa ◽  
W. S. Martins ◽  
S. Barreiro ◽  
...  

2012 ◽  
Author(s):  
Gordon Robb ◽  
Padma K. Shukla ◽  
José Tito Mendonça ◽  
Bengt Eliasson ◽  
David Resedes

Author(s):  
Ryohei Yamagishi ◽  
Hiroto Otsuka ◽  
Ryo Ishikawa ◽  
Akira Saitou ◽  
Hiroshi Suzuki ◽  
...  

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