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High Quantum Efficiency of Intersubband Transision on Combined Parity Levels in Triple-Barrier Structures

机译:三势垒结构中奇偶校验水平上子带间跃迁的高量子效率

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Exact analytical steady-state solution of the time-dependence Schrodinger equations at resonance in hf electric field of finite amplitude is found as well as expression for hf active conductivity. It is shown that if the energy levels in each quantum well which form the common resonance level of the whole structure have the different parity, the common resonance level width and integral hf structure conductance can rise many times and quantum efficiency of radiative transitions between dimensionally quantized levels can be up to 80 %. Respectively, the electron life time in structure fall many times, so the conditions for electron to leave the structure without electron-phonon collision can be simply realized, and one has the real way for realization of ballistic electron transport quantum-cascade laser
机译:发现了时域Schrodinger方程在有限振幅的高频电场中共振时的精确解析稳态解,以及高频有源电导率的表达式。结果表明,如果形成整个结构的公共共振能级的每个量子阱中的能级具有不同的奇偶性,则公共共振能级宽度和整体hf结构电导会提高很多倍,并且在尺寸量化之间的辐射跃迁的量子效率含量最高可达80%。分别地,结构中的电子寿命降低了许多倍,因此电子可以简单地实现无电子-声子碰撞而离开结构的条件,这是实现弹道电子传输量子级联激光器的真实途径。

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