Tailoring the Direct Current Modulation Response of Electrically Pumped Semiconductor Nano-Laser Arrays

IF 2.1 4区 物理与天体物理 Q2 OPTICS
Yuanlong Fan, Siyi An, K. A. Shore, Xiaopeng Shao
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Abstract

Semiconductor nano-lasers have been a topic of interest from the perspective of advancing the capabilities of photonic integration. Nano-lasers are perceived as the means to achieve improved functionality in photonic integrated circuits. The properties and performance of nano-lasers have been examined by means of simulations and laboratory measurements. Nano-lasers lend themselves to integration to form dense arrays in both one and two dimensions. In a recent work, a theoretical treatment was presented for the dynamic behaviour of stand-alone electrically pumped nano-laser arrays. In this work, the response of nano-laser arrays to direct current modulation is examined. As in previous works, attention is given to two prototype array geometries: a linear three-element linear array and an equilateral triangular array. Large one-dimensional arrays can be built by repeating this elementary linear array. Two-dimensional photonic integrated circuits can incorporate the triangular arrays studied here. Such prototypical configurations offer opportunities to tailor the modulation response of the nano-laser arrays. The principal factors which provide that capability are the coupling strengths between lasers in the arrays and the direct modulation parameters. The former are fixed at the design and manufacture stage of the array whilst the latter can be chosen. In addition, the enhancement of the spontaneous emission rate via the so-called Purcell effect in nano-lasers offers a device-specific means for accessing a range of modulation responses. Two-dimensional portraits of the regimes of differing modulation responses offer a convenient means for determining the dynamics that may be accessed by varying the laser drive current. It is shown by these means that a rich variety of modulation responses can be accessed in both linear and triangular arrays.
定制电泵半导体纳米激光器阵列的直流调制响应
从提高光子集成能力的角度来看,半导体纳米激光器一直是一个备受关注的话题。纳米激光器被认为是实现光子集成电路更多功能的手段。通过模拟和实验室测量,对纳米激光器的特性和性能进行了研究。纳米激光器可以在一维和二维范围内集成形成密集阵列。在最近的一项工作中,对独立电泵纳米激光器阵列的动态行为进行了理论处理。在这项工作中,研究了纳米激光器阵列对直流调制的响应。与之前的研究一样,本研究关注两种原型阵列几何结构:线性三元素线性阵列和等边三角形阵列。通过重复这种基本线性阵列,可以构建大型一维阵列。二维光子集成电路可以结合本文研究的三角形阵列。这种原型配置为定制纳米激光器阵列的调制响应提供了机会。提供这种能力的主要因素是阵列中激光器之间的耦合强度和直接调制参数。前者在阵列的设计和制造阶段就已固定,而后者则可以选择。此外,通过纳米激光器中所谓的珀塞尔效应来提高自发辐射率,为获得一系列调制响应提供了一种针对特定设备的方法。对不同调制响应的二维描绘为确定通过改变激光驱动电流可以获得的动态提供了一种便捷的方法。这些方法表明,在线性阵列和三角形阵列中可以获得丰富多样的调制响应。
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来源期刊
Photonics
Photonics Physics and Astronomy-Instrumentation
CiteScore
2.60
自引率
20.80%
发文量
817
审稿时长
8 weeks
期刊介绍: Photonics (ISSN 2304-6732) aims at a fast turn around time for peer-reviewing manuscripts and producing accepted articles. The online-only and open access nature of the journal will allow for a speedy and wide circulation of your research as well as review articles. We aim at establishing Photonics as a leading venue for publishing high impact fundamental research but also applications of optics and photonics. The journal particularly welcomes both theoretical (simulation) and experimental research. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. Electronic files and software regarding the full details of the calculation and experimental procedure, if unable to be published in a normal way, can be deposited as supplementary material.
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