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Multiple-wavelength GaInAs-GaAs vertical cavity surface emitting laser array with extended wavelength span

机译:多波长GAINAS-GAAS垂直腔表面发射激光阵列,具有延伸波长跨度

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摘要

The wavelength engineering of vertical cavity surface emitting lasers (VCSEL) on a nonplanar substrate enables us to realize a multiwavelength VCSEL array. We are able to control the wavelength of both a cavity resonance and the gain peak of an active region, depending on patterned shapes. A main limiting factor in expanding the wavelength span in arrays is the offset between the gain peak and the resonant wavelength. In order to overcome this offset, we optimized a gain-cavity detuning to extend the wavelength span. A wavelength span of over 100 nm was obtained from a fabricated 12-channel array. The output power is over 1 mW, and threshold current is 0.65 /spl plusmn/ 0.2 mA. We carried out the compensation of the threshold current-density variation by the precise control of oxide apertures in each element. In addition, we proposed a growth-pressure control in epitaxial growth on a patterned substrate for further extension of the lasing wavelength span. We demonstrated a 0.96-1.16-/spl mu/m multiple-wavelength VCSEL array with highly strained GaInAs-GaAs QWs exhibiting a record wavelength span of 192 nm. These technologies would enable low-cost wideband wavelength division multiplexing data links.
机译:非平坦基板上的垂直腔表面发射激光器(VCSEL)的波长工程使我们能够实现多波长VCSEL阵列。考虑到图案的形状,我们能够控制腔谐振和活性区域的增益峰的波长。在阵列中扩展波长跨度的主要限制因子是增益峰值和谐振波长之间的偏移。为了克服这种偏移,我们优化了增益腔失真以延长波长跨度。从制造的12通道阵列获得超过100nm的波长跨度。输出功率超过1 MW,阈值电流为0.65 / SPL PLUSMN / 0.2 mA。我们通过精确控制每个元件中的氧化物孔的精确控制来进行阈值电流密度变化的补偿。另外,我们提出了在图案化基板上的外延生长中的生长压力控制,用于进一步延伸激光波长跨度。我们展示了0.96-1.16- / SPL MU / M多波长VCSEL阵列,具有高度应变的GAINA-GAAS QW,其具有192nm的记录波长跨度。这些技术将使低成本的宽带波分复用数据链路能够实现。

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