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Broadband radio-frequency spectrum analysis in spectral-hole-burning media

机译:频谱孔燃烧介质中的宽带射频频谱分析

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We demonstrate a 20 GHz spectrum analyzer with 1 MHz resolution and >40 dB dynamic range using spectral-hole-burning (SHB) crystals, which are cryogenically cooled crystal hosts lightly doped with rare-earth ions. We modulate a rf signal onto an optical carrier using an electro-optic intensity modulator to produce a signal beam modulated with upper and lower rf sidebands. Illuminating SHB crystals with modulated beams excites only those ions resonant with corresponding modulation frequencies, leaving holes in the crystal's absorption profile that mimic the modulation power spectrum and persist for up to 10 ms. We determine the spectral hole locations by probing the crystal with a chirped laser and detecting the transmitted intensity. The transmitted intensity is a blurred-out copy of the power spectrum of the original illumination as mapped into a time-varying signal. Scaling the time series associated with the transmitted intensity by the instantaneous chirp rate yields the modulated beam's rf power spectrum. The homogeneous linewidth of the rare-earth ions, which can be <100 kHz at cryogenic temperatures, limits the fundamental spectral resolution, while the medium's inhomogeneous linewidth, which can be >20 GHz, determines the spectral bandwidth.
机译:我们演示了一种20 GHz频谱分析仪,其使用频谱孔燃烧(SHB)晶体,具有1 MHz的分辨率和> 40 dB的动态范围,该晶体是低温冷却的晶体宿主,轻掺杂了稀土离子。我们使用电光强度调制器将rf信号调制到光载波上,以产生使用上下rf边带调制的信号束。用调制光束照射SHB晶体仅会激发那些以相应调制频率谐振的离子,从而在晶体的吸收曲线中留下模仿调制功率谱的空穴,并持续10毫秒。我们通过用laser激光探测晶体并检测透射强度来确定光谱孔的位置。传输的强度是原始照明的功率谱的模糊副本,如映射到随时间变化的信号中。通过瞬时chi率缩放与发射强度相关的时间序列,可产生调制光束的rf功率谱。稀土离子的均匀线宽(在低温下可以<100 kHz)限制了基本光谱分辨率,而介质的不均匀线宽(可以> 20 GHz)决定了光谱带宽。

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