Difference between revisions of "Physics and applications of Rydberg atoms"

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1*. Mark Saffman, Wisconsin, [[Rydberg atom quantum computing]]
 
1*. Mark Saffman, Wisconsin, [[Rydberg atom quantum computing]]
  
2. Matthew Jones, Durham, Rydberg interactions and simulation of spin models (?)
+
2*. Haruka Maeda, Aoyama-Gakuin, [[Microwave ionization of Rydberg atoms]]
  
3*. Haruka Maeda, Aoyama-Gakuin, Microwave ionization of Rydberg atoms
+
3*. Hyunwook Park, Ohio University, Microwave spectroscopy of Rydberg atoms
  
4*. Hyunwook Park, Ohio University, Microwave spectroscopy of Rydberg atoms
+
4*. Jae-yoon Choi, MPI-Quantum Optics, Munich, Long-range interacting quantum magnets of Rydberg dressed atoms
 
 
5*. Jae-yoon Choi, MPI-Quantum Optics, Munich, Long-range interacting quantum magnets of Rydberg dressed atoms
 
 
 
6. Hansub Moon, Pusan National University, Rydberg atom EIT
 
 
 
7*. Jaewook Ahn, KAIST, Rydberg atom array
 
  
 +
5*. Jaewook Ahn, KAIST, Rydberg atom array
  
 
(* confirmed)
 
(* confirmed)
  
 
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Revision as of 00:53, 4 September 2015

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Pioneering Symposium on Rydberg Atom Physics

during Korean Physical Society Meeting (Oct. 21-23, Kyungju)

Abstract due : September 2nd

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1*. Mark Saffman, Wisconsin, Rydberg atom quantum computing

2*. Haruka Maeda, Aoyama-Gakuin, Microwave ionization of Rydberg atoms

3*. Hyunwook Park, Ohio University, Microwave spectroscopy of Rydberg atoms

4*. Jae-yoon Choi, MPI-Quantum Optics, Munich, Long-range interacting quantum magnets of Rydberg dressed atoms

5*. Jaewook Ahn, KAIST, Rydberg atom array

(* confirmed)

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