首页> 美国卫生研究院文献>Sensors (Basel Switzerland) >Application of WGM Resonances to the Measurement of the Temperature Increment of Ho and Ho-Yb Doped Optical Fibers Pumped at 1125 and 975 nm
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Application of WGM Resonances to the Measurement of the Temperature Increment of Ho and Ho-Yb Doped Optical Fibers Pumped at 1125 and 975 nm

机译:WGM共振在1125和975nm泵浦HO和HO-YB掺杂光纤温度递增的测量中的应用

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摘要

Optical fiber characterization using whispering gallery mode resonances of the fiber itself has been demonstrated to be a powerful technique. In this work, we exploit the thermal sensitivity of whispering gallery mode resonances to characterize the pump-induced temperature increment in holmium doped and holmium-ytterbium codoped optical fibers. The technique relies on the measurement of the resonances’ wavelength shift due to temperature variation as a function of the pump power. Holmium doped fibers were pumped to the second excited level 5I6 of the Ho3+ ion using a laser diode at 1125 nm and ytterbium-holmium codoped fibers to the 2F5/2 level of the Yb3+ ion by a laser diode at 975 nm. Our results demonstrate that pumping ytterbium-holmium codoped fibers at 975 nm results in dramatic thermal effects, producing a temperature increment two orders higher than that observed in holmium doped fibers pumped with a 1125 nm laser diode.
机译:光纤表征使用耳语廊道模式的光纤本身的共振已经证明是一种强大的技术。在这项工作中,我们利用低语廊道模式共振的热敏性,以表征钬掺杂和钬 - 镱编排光纤中的泵诱导的温度增量。该技术依赖于由于温度变化而导致的谐振'波长移位的测量。使用激光二极管在1125nm和钬 - 钬编码纤维下,通过激光二极管在975nm处,使用激光二极管将钬掺杂纤维泵送到HO3 +离子的第二激发含​​量为HO3 +离子的第二激发含​​量5i6。我们的结果表明,在975nm下泵送YTTerbium-Holmium Compoped纤维导致剧烈的热效应,产生比在用1125nm激光二极管泵送的钬掺杂纤维中观察到的温度增量的两个订单。

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