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Laser polarization and phase control of up-conversion fluorescence in rare-earth ions

机译:稀土离子的激光偏振和上转换荧光的相位控制

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摘要

We theoretically and experimentally demonstrate the up-conversion fluorescence control via resonance-mediated two-photon absorption in rare-earth ions by varying both the laser polarization and phase. We show that both the laser polarization and phase can control the up-conversion fluorescence, and the up-conversion fluorescence intensity is decreased when the laser polarization changes from linear through elliptical to circular. We also show that the laser polarization will affect the control efficiency of the up-conversion fluorescence by varying the laser phase, and the circular polarization will reduce the control efficiency. Furthermore, we suggest that the control efficiency by varying the laser polarization and the effect of the laser polarization on the control efficiency by varying the laser phase can be artificially manipulated by controlling the laser spectral bandwidth. This optical control method opens a new opportunity to control the up-conversion fluorescence of rare-earth ions, which may have significant impact on the related applications of rare-earth ions.
机译:我们在理论上和实验上通过改变激光偏振和相位,通过共振介导的稀土离子中双光子吸收的上转换荧光控制。我们表明,激光偏振和相位都可以控制上转换荧光,并且当激光偏振从线性变为椭圆形变为圆形时,上转换荧光强度会降低。我们还表明,激光偏振会通过改变激光相位而影响上转换荧光的控制效率,而圆偏振会降低控制效率。此外,我们建议通过控制激光光谱带宽,可以人为地操纵通过改变激光偏振的控制效率和通过改变激光相位的激光偏振对控制效率的影响。这种光学控制方法为控制稀土离子的上转换荧光开辟了新的机遇,这可能对稀土离子的相关应用产生重大影响。

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