NatureSir Norman Lockyer Macmillan Journals Limited, 2007 - Science |
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Page 889
... photon counting Christine Guerlin1 , Julien Bernu1 , Samuel Deléglise1 , Clément Sayrin1 , Sébastien Gleyzes1 , Stefan Kuhr1 † , Michel Brune1 , Jean - Michel Raimond1 & Serge Haroche 1,2 The irreversible evolution of a microscopic ...
... photon counting Christine Guerlin1 , Julien Bernu1 , Samuel Deléglise1 , Clément Sayrin1 , Sébastien Gleyzes1 , Stefan Kuhr1 † , Michel Brune1 , Jean - Michel Raimond1 & Serge Haroche 1,2 The irreversible evolution of a microscopic ...
Page 891
... photon number distribution and average photon number , no = 3.82 ± 0.04 , are inferred from the experimental data ( see below ) . Our single - photon - sensitive spin- clocks are circular Rydberg atoms of rubidium . They cross C ...
... photon number distribution and average photon number , no = 3.82 ± 0.04 , are inferred from the experimental data ( see below ) . Our single - photon - sensitive spin- clocks are circular Rydberg atoms of rubidium . They cross C ...
Page 892
... photon number distribution . We have computed the mean photon number ( n ) = ∑nnP ( n ) at the end of each sequence . The histogram of these ( n ) values , sampled in bins of width 0.2 , is shown in Fig . 3. Peaks at integers appear on ...
... photon number distribution . We have computed the mean photon number ( n ) = ∑nnP ( n ) at the end of each sequence . The histogram of these ( n ) values , sampled in bins of width 0.2 , is shown in Fig . 3. Peaks at integers appear on ...
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