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Resonant-phonon terahertz quantum-cascade lasers using metal-metal waveguides

机译:使用金属-金属波导的共振声子太赫兹量子级联激光器

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We report the development and progress of terahertz quantum cascade lasers (QCLs) that use the resonant-phonon depopulation scheme to obtain population inversion and where a low-loss, high-modal-confinement metal-metal waveguide is used. These waveguides were fabricated using an indium-gold reactive wafer bonding technique followed by substrate removal, and have been used to obtain lasing up to 137 K in pulsed mode and 93 K in continuous wave (cw) mode. Also, lasing has been obtained at frequencies as low as 2.1 THz (/spl lambda/=141 /spl mu/m), which is the longest wavelength achieved in a QCL without the use of a magnetic field. Recently, an alternative copper-copper thermocompression wafer bonding technique was used to extend cw operation up to a temperature of 97 K.
机译:我们报告了太赫兹量子级联激光器(QCL)的发展和进步,该激光器使用共振声子减数方案来获得种群反转,并且使用了低损耗​​,高模态约束金属-金属波导。这些波导是使用铟-金反应性晶圆键合技术制造的,然后去除衬底,并且已用于在脉冲模式下获得高达137 K的激光,在连续波(cw)模式下获得高达93 K的激光。同样,在低至2.1 THz的频率(/ splλ/ = 141 / spl mu / m)下获得了激光发射,这是在不使用磁场的情况下在QCL中获得的最长波长。最近,一种替代的铜-铜热压晶片键合技术被用于将连续波操作扩展到97 K的温度。

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