Brillouin light storage for 100 pulse widths

Birgit Stiller, Kevin Jaksch, Johannes Piotrowski, Moritz Merklein, Mikołaj K. Schmidt, Khu Vu, Pan Ma, Stephen Madden, Michael J. Steel, Christopher G. Poulton, Benjamin J. Eggleton
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Abstract

Signal processing based on stimulated Brillouin scattering (SBS) is limited by the narrow linewidth of the optoacoustic response, which confines many Brillouin applications to continuous wave signals or optical pulses longer than several nanoseconds. In this work, we experimentally demonstrate Brillouin interactions at the 150 ps time scale and a delay for a record 15 ns which corresponds to a delay of 100 pulse widths. This breakthrough experimental result was enabled by the high local gain of the chalcogenide waveguides as the optoacoustic interaction length reduces with pulse width. We successfully transfer 150 ps-long pulses to traveling acoustic waves within a Brillouin-based memory setup. The information encoded in the optical pulses is stored for 15 ns in the acoustic field. We show the retrieval of eight amplitude levels, multiple consecutive pulses, and low distortion in pulse shape. The extension of Brillouin-based storage to the ultra-short pulse regime is an important step for the realization of practical Brillouin-based delay lines and other optical processing applications.

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可存储 100 个脉冲宽度的布里渊光
基于受激布里渊散射(SBS)的信号处理受限于光声响应的窄线宽,这使得许多布里渊应用局限于连续波信号或长度超过数纳秒的光脉冲。在这项工作中,我们通过实验证明了布里渊相互作用的时间尺度为 150 ps,延迟时间为创纪录的 15 ns,相当于 100 个脉冲宽度的延迟时间。这一突破性的实验结果得益于卤化铝波导的高局部增益,因为光声相互作用长度随着脉冲宽度的减小而减小。我们成功地在基于布里渊的存储装置中将 150 ps 长的脉冲传输到行进声波中。光脉冲中编码的信息在声场中存储了 15 毫微秒。我们展示了八个振幅级别、多个连续脉冲和低失真脉冲形状的检索。将基于布里渊的存储技术扩展到超短脉冲系统是实现基于布里渊的实用延迟线和其他光学处理应用的重要一步。
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