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Long-wavelength (15.5-um) quantum fountain intersubband laser InGaAs/AlGaAs quantum wells

机译:长波长(15.5um)量子喷泉带间激光器InGaAs / AlGaAs量子阱

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Abstract: A new type of semiconductor unipolar laser operating in the mid-infrared spectral region, the Quantum Fountain intersubband laser, is demonstrated. It is based on optical pumping of a three-bound-state coupled quantum well structure in the GaAs/AlGaAs material system. The lasing transition occurs between the two excited states. Population inversion can be achieved by benefitting from LO-phonon resonance between the two lower subbands. The optical pumping scheme enables a simpler design of the active region than electrically pumped intersubband lasers. Moreover, because doped layers and metallic contacts are not necessary for the operation of the Quantum Fountain laser, free-carrier and plasmon absorptions can be minimised, thus allowing long- wavelength operation. Large optical gains are measured using pump-probe experiments with a free-electron laser. Lasing action under optical pumping by a pulsed CO$-2$/ laser has been achieved at a record long wavelength of 15.5 micrometer with an output peak power of the order of 0.6 W at low temperatures. !20
机译:摘要:展示了一种在中红外光谱区工作的新型半导体单极激光器,量子喷泉带间激光器。它基于GaAs / AlGaAs材料系统中三键态耦合量子阱结构的光泵浦。激射跃迁发生在两个激发态之间。可以通过受益于两个较低子带之间的LO声子共振来实现种群反转。与电泵浦的子带间激光器相比,光泵浦方案使有源区域的设计更为简单。此外,由于量子喷泉激光器的工作不需要掺杂层和金属触点,因此可以将自由载流子和等离激元的吸收降至最低,从而可以进行长波长工作。使用泵浦探针实验和自由电子激光器测量大的光学增益。在创纪录的15.5微米长波长下,通过脉冲CO $ -2 $ /激光在光泵浦下实现了激光作用,在低温下输出峰值功率约为0.6W。 !20

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