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Engineering the gain/loss profile of intersubband optical devices having heterogeneous cascades

机译:设计具有异构级联的子带间光学设备的增益/损耗曲线

摘要

An optical device includes a stack of at least two different intersubband (ISB) optical sub-devices in which the gain/loss profiles of the individual ISB sub-devices are mutually adapted, or engineered, so as to generate a predetermined overall function for the combination. We define this combination device as being heterogeneous since not all of the individual ISB sub-devices are identical to one another. Illustratively, the parameters of each individual ISB sub-device that might be subject to this engineering process include: the peak energy of the ISB optical transitions (emission or absorption) associated with each RT region, the position of each sub-device in the stack; the oscillator strengths of these ISB transitions; the energy bandwidth of each transition; and the total length of the RT and I/R regions of each ISB sub-device. In one embodiment, our approach may be used to engineer a gain profile that has peaks at a multiplicity of different wavelengths, thus realizing a multi-wavelength ISB optical source in which the applied electric field self-proportions itself so that each individual ISB sub-device experiences the appropriate field strength for its particular design. Alternatively, the gain profile may be engineered to be relatively flat over a predetermined wavelength range. In another embodiment, our approach may be used to generate a function that compensates for a characteristic of another device. For example, our heterogeneous ISB device may be engineered to have a gain profile that compensates for the loss profile of another device. Alternatively, the gain/loss profile may be engineered to produce a nonlinear refractive index profile in our device that compensates for that of another device (e.g., an optical fiber).
机译:光学设备包括至少两个不同的子带间(ISB)光学子设备的堆栈,其中各个ISB子设备的增益/损耗曲线相互适应或设计,以便为该子设备生成预定的整体功能组合。我们将这种组合设备定义为异构设备,因为并非所有单独的ISB子设备都完全相同。说明性地,可能要经受此工程处理的每个单独的ISB子设备的参数包括:与每个RT区域相关的ISB光学跃迁(发射或吸收)的峰值能量,每个子设备在堆栈中的位置;这些ISB转换的振荡器强度;每个过渡的能量带宽;以及每个ISB子设备的RT和I / R区域的总长度。在一个实施例中,我们的方法可用于设计在多个不同波长处具有峰值的增益曲线,从而实现多波长ISB光源,其中所施加的电场自身成比例,因此每个单独的ISB器件针对其特定设计要经历适当的场强。备选地,可以将增益分布图设计为在预定波长范围内相对平坦。在另一个实施例中,我们的方法可以用于生成补偿另一个设备的特性的函数。例如,我们的异构ISB设备可以设计为具有补偿另一个设备的损耗曲线的增益曲线。可替代地,可以设计增益/损耗分布图以在我们的设备中产生非线性折射率分布图,该非线性折射率分布图补偿另一设备(例如,光纤)的非线性折射率分布图。

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