论文标题

Terahertz电子振荡器中超快动力学的相位分辨测量和控制

Phase-resolved measurement and control of ultrafast dynamics in terahertz electronic oscillators

论文作者

Arikawa, Takashi, Kim, Jaeyong, Mukai, Toshikazu, Nishigami, Naoki, Fujita, Masayuki, Nagatsuma, Tadao, Tanaka, Koichiro

论文摘要

作为下一代无线通信(6G及以后)的关键组件,Terahertz(THZ)电子振荡器正在积极开发。超快THZ波形的精确和动态相控制对于高速梁转向和高容量数据传输至关重要。但是,由于电气测量仪器的带宽有限,这种超快动态过程的测量超出了电子设备的范围。在这里,我们通过应用光子技术超越了这一限制。使用飞秒激光器,我们基于谐振隧道二极管生成无偏移的THZ脉冲来将电子振荡器锁定。这使我们能够以亚周期时间分辨率在时间域中对发射的THZ电场波形进行相位分辨的测量。观察到超快动态反应,例如抗相距锁定行为,这与在激光振荡器中观察到的同相刺激发射不同。我们还表明,动力学遵循极限循环振荡器的通用同步理论。这为THZ电子振荡器的动态相位控制提供了基本指南,从而在6G及以后的新时代可以实现许多关键的性能指标。

As a key component for next-generation wireless communications (6G and beyond), terahertz (THz) electronic oscillators are being actively developed. Precise and dynamic phase control of ultrafast THz waveforms is essential for high-speed beam steering and high-capacity data transmission. However, measurement of such ultrafast dynamic process is beyond the scope of electronics due to the limited bandwidth of the electrical measuring instruments. Here we surpass this limit by applying photonic technology. Using a femtosecond laser, we generate offset-free THz pulses to phase-lock the electronic oscillators based on a resonant tunneling diode. This enables us to perform phase-resolved measurement of the emitted THz electric field waveform in time-domain with sub-cycle time resolution. Ultrafast dynamic response such as anti-phase locking behaviour is observed, which is distinct from in-phase stimulated emission observed in laser oscillators. We also show that the dynamics follows the universal synchronization theory for limit cycle oscillators. This provides a basic guideline for dynamic phase control of THz electronic oscillators, enabling many key performance indicators to be achieved in the new era of 6G and beyond.

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