Minimizing the Operating Current of Quantum Well Lasers with Modulation Bandwidth and Optical Power Requirements

M. McAdams, B. Zhao, T.R. Chen, J. Feng, A. Yariv
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Abstract

When semiconductor lasers are used in optical telecommunication and optical interconnect applications, it is desirable to have as low an electrical power consumption as possible, i.e. a low operating current. However, if used in a high data transmission rate system, there may be a minimum requisite modulation bandwidth. In addition, signal-to-noise considerations often demand a minimum optical output power. While lowering the threshold current often improves the bandwidth and output power at a given operating current, it is not true that a laser optimized solely for the lowest threshold current will have the lowest operating current when biased to meet the requirements of a particular system. In this talk we discuss how the laser device parameters are optimized to produce the lowest operating current in applications with given bandwidth and optical power requirements.
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具有调制带宽和光功率要求的量子阱激光器的最小工作电流
当半导体激光器用于光通信和光互连应用时,希望具有尽可能低的电力消耗,即低的工作电流。然而,如果在高数据传输速率系统中使用,则可能存在最小必要的调制带宽。此外,考虑到信噪比,通常需要最小的光输出功率。虽然降低阈值电流通常会提高给定工作电流下的带宽和输出功率,但仅针对最低阈值电流进行优化的激光器在偏置以满足特定系统的要求时并不会具有最低的工作电流。在这次演讲中,我们讨论了如何优化激光器件参数,以在给定带宽和光功率要求的应用中产生最低的工作电流。
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