论文标题

光机电诱导的载体 - Envelope-相位效应及其分析解决方案

Optomechanically induced carrier-envelope-phase dependent effects and their analytical solutions

论文作者

Ma, Jinyong, Gan, Jinghui, Guccione, Giovanni, Campbell, Geoff T., Buchler, Ben C., Lü, Xinyou, Wu, Ying, Lam, Ping Koy

论文摘要

迄今为止,对载体 - 内玻璃相(CEP)依赖性效应的研究仅限于循环和高强度很少的光脉冲,并且尚未报道其他类型的脉冲。光学机制显示具有超出这些限制的潜力。我们提出了一种使用光学力学将传统CEP概念扩展到机械脉冲的方法,并开发了两步模型以提供物理见解。通过添加辅助连续光场,我们表明即使在机械脉冲的多周期中,CEP依赖性效应也会出现。我们获得了近似的分析溶液,为这些光机电诱导的CEP依赖性效应提供了充分的了解。此外,我们的发现表明,可以利用光学机械相互作用,以恢复CEP依赖性对光脉冲的影响,并具有任意数量的循环且无特定强度要求的光学脉冲。 CEP的效果广泛扩展,以包含少量和多周期的光学和机械脉冲,可能会刺激各种应用在制备CEP稳定脉冲时,具有所需形状的超声脉冲的产生,光学梳子的线性操纵等等。

To date, investigations of carrier-envelope-phase (CEP) dependent effects have been limited to optical pulses with few cycles and high intensity, and have not been reported for other types of pulses. Optomechanical systems are shown to have the potential to go beyond these limits. We present an approach using optomechanics to extend the concept of the traditional CEP in the few-cycle regime to mechanical pulses and develop a two-step model to give a physical insight. By adding an auxiliary continuous optical field, we show that a CEP-dependent effect appears even in the multi-cycle regime of mechanical pulses. We obtain the approximated analytical solutions providing full understanding for these optomechanically induced CEP-dependent effects. In addition, our findings show that one can draw on the optomechanical interaction to revive the CEP-dependent effects on optical pulses with an arbitrary number of cycles and without specific intensity requirements. The effects of CEP, broadly extended to encompass few- and multi-cycle optical and mechanical pulses, may stimulate a variety of applications in the preparation of a CEP-stabilized pulse, the generation of ultrasonic pulses with a desired shape, the linear manipulation of optical combs, and more.

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