Pulse repetition rate in a self-contained strontium ion laser
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作者:
Soldatov, A. N.
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Russian State Univ Innovat Technol & Enterprise, W Siberian Branch, Tomsk 630050, Russia
Tomsk State Univ, Tomsk 630050, RussiaRussian State Univ Innovat Technol & Enterprise, W Siberian Branch, Tomsk 630050, Russia
Soldatov, A. N.
[1
,2
]
Yudin, N. A.
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Russian State Univ Innovat Technol & Enterprise, W Siberian Branch, Tomsk 630050, RussiaRussian State Univ Innovat Technol & Enterprise, W Siberian Branch, Tomsk 630050, Russia
Yudin, N. A.
[1
]
Vasil'eva, A. V.
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Tomsk State Univ, Tomsk 630050, RussiaRussian State Univ Innovat Technol & Enterprise, W Siberian Branch, Tomsk 630050, Russia
Vasil'eva, A. V.
[2
]
Polunin, Yu. P.
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Tomsk State Univ, Tomsk 630050, RussiaRussian State Univ Innovat Technol & Enterprise, W Siberian Branch, Tomsk 630050, Russia
Polunin, Yu. P.
[2
]
Chebotarev, G. D.
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So Fed Univ, Dept Phys, Rostov Na Donu 344090, RussiaRussian State Univ Innovat Technol & Enterprise, W Siberian Branch, Tomsk 630050, Russia
Chebotarev, G. D.
[3
]
Latush, E. L.
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So Fed Univ, Dept Phys, Rostov Na Donu 344090, RussiaRussian State Univ Innovat Technol & Enterprise, W Siberian Branch, Tomsk 630050, Russia
Latush, E. L.
[3
]
Fesenko, A. A.
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So Fed Univ, Dept Phys, Rostov Na Donu 344090, RussiaRussian State Univ Innovat Technol & Enterprise, W Siberian Branch, Tomsk 630050, Russia
Fesenko, A. A.
[3
]
机构:
[1] Russian State Univ Innovat Technol & Enterprise, W Siberian Branch, Tomsk 630050, Russia
[2] Tomsk State Univ, Tomsk 630050, Russia
[3] So Fed Univ, Dept Phys, Rostov Na Donu 344090, Russia
The frequency and energy parameters of self-contained strontium ion laser (lambda = 1.033 and 1.091 mu m) are studied upon excitation by an additional pulse before each excitation pulse. The kinetics of processes in the active medium of this laser is numerically simulated. It is shown that the pulse repetition rate of the self-contained strontium laser can achieve similar to 1 MHz. It is found that the laser pulse energy in the first pulse and the average output power and efficiency increase in a certain range of time delays between the additional and excitation pulses, which is caused by the significant prepulse concentration of strontium ions which had no time to recombine. The outlook for the application of pulse trains to excite self-contained IR transitions in strontium ions is shown.