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Phase-modulating lasers toward on-chip integration

机译:相位调制激光器实现片上集成

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摘要

Controlling laser-beam patterns is indispensable in modern technology, where lasers are typically combined with phase-modulating elements such as diffractive optical elements or spatial light modulators. However, the combination of separate elements is not only a challenge for on-chip miniaturisation but also hinders their integration permitting the switchable control of individual modules. Here, we demonstrate the operation of phase-modulating lasers that emit arbitrarily configurable beam patterns without requiring any optical elements or scanning devices. We introduce a phase-modulating resonator in a semiconductor laser, which allows the concurrent realisation of lasing and phase modulation. The fabricated devices are on-chip-sized, making them suitable for integration. We believe this work will provide a breakthrough in various laser applications such as switchable illumination patterns for bio-medical applications, structured illuminations, and even real three-dimensional or highly realistic displays, which cannot be realised with simple combinations of conventional devices or elements.
机译:在现代技术中,控制激光束图案是必不可少的,在现代技术中,激光通常与相位调制元件(例如衍射光学元件或空间光调制器)组合在一起。然而,单独元件的组合不仅是片上微型化的挑战,而且阻碍了它们的集成,从而允许对单个模块进行可切换控制。在这里,我们演示了无需任何光学元件或扫描装置即可发射任意配置光束图案的调相激光器的操作。我们在半导体激光器中引入了相位调制谐振器,它可以同时实现激光和相位调制。制成的器件为片上尺寸,因此适合集成。我们相信这项工作将在各种激光应用中取得突破,例如生物医学应用的可切换照明模式,结构化照明,甚至是真实的三维或高度逼真的显示器,而这是常规设备或元件的简单组合无法实现的。

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