Kinos Adam, Li Qian, Rippe Lars, Kröll Stefan
Appl Opt. 2016 Dec 20;55(36):10442-10448. doi: 10.1364/AO.55.010442.
The present work addresses critical issues in constructing high suppression, narrowband spectral filters in rare-earth-ion-doped crystals, mainly targeting the application of ultrasound optical tomography but is also applicable for areas such as quantum memories, self-filtering of laser frequencies, and other applications relying on high absorption in rare-earth-ion-doped crystals. The polarization of light transmitted through a highly absorbing crystal is experimentally analyzed. Additionally, an existing wave propagation method is used to simulate beam propagation through a spectral hole to study the high étendue requirements of ultrasound optical tomography.
本工作解决了在稀土离子掺杂晶体中构建高抑制、窄带光谱滤波器的关键问题,主要针对超声光学层析成像的应用,但也适用于量子存储器、激光频率的自滤波以及其他依赖稀土离子掺杂晶体高吸收的应用领域。对透过高吸收晶体的光的偏振进行了实验分析。此外,采用现有的波传播方法来模拟光束通过光谱孔的传播,以研究超声光学层析成像的高扩展度要求。