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Multi-section semiconductor lasers: Their design can serve multiple applications and open possibilities for new applications

机译:多部分半导体激光器:它们的设计可以为新应用提供多种应用和开放的可能性

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Multi-section, semiconductor lasers have traditionally been designed and optimized for a single type of output. For example: narrow linewidth, cw; or, short duration pulses at high repetition frequency, including mode-locked pulses; or, broadband, high dimensional chaotic output have been achieved. Herein we discuss how recent results from high resolution mapping of the nonlinear dynamics of a multi-section laser suggests new thinking on the design of such multi-section laser sources. They can be designed to provide several types of output in different regions of a parameter space for a device. Thus, a single design has the potential to support several different applications. This also presents an opportunity to the photonics and optoelectronics community to think creatively about what new and significant applications might benefit from sources with multiple types of output. Also, such a motivation can focus thinking on what functions can be added to the library of "sections" that can be integrated into multi-section devices, and how these functions can be further tailored using different materials and fabrication methods.
机译:多部分,传统上设计并针对单一类型的输出设计和优化了半导体激光器。例如:窄线宽,CW;或者,在高重复频率下的短持续时间脉冲,包括模式锁定脉冲;或者,已经实现了宽带,高维混沌输出。在此,我们讨论了多部分激光器的非线性动态的高分辨率映射近期结果的近期结果表明了对这种多截面激光源的设计的新思维。它们可以设计为在设备的参数空间的不同区域提供多种类型的输出。因此,单个设计具有支持几种不同的应用。这也给了光子和光电子社区的机会,以创造性地思考新的和重要的应用程序可能从具有多种类型的输出的来源中受益。此外,这种动机可以侧重于思考可以将功能添加到可以集成到多部分设备的“部分”库中的功能,以及如何使用不同的材料和制造方法进一步定制这些功能。

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