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Observation of pressure-induced direct-to-indirect band gap transition in InP nanocrystals

机译:InP纳米晶体中压力诱导的直接至间接带隙跃迁的观察

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We investigate the quantum size effects in the pressure-induced direct-co-indirect band gap transition in InP nanocrystals. Hydrostatic pressures of up to 13 GPa are applied to two different sizes of lnP nanocrystal samples in a diamond anvil cell. The band gap pressure dependence and the nature of the emitting states are studied by photoluminescence (PL) and fluorescence line narrowing (FLN) techniques at 10 K. Pressure-dependent FLN spectra show that the nature of the emitting states at pressures up to 9 GPa is similar to that at ambient pressure, suggesting that no direct-to-indirect transition happens below 9 GPa. For both sizes, the PL peak energy exhibits a strong blueshift with rising pressure until approximately 9 to 10 CPa. Above this pressure, the PL peak position slightly shifts red. Beyond 12 GPa. the band gap emission intensity becomes extremely weak and trap emission dominates the PL spectra. As the pressure is released. both the luminescence intensity and the peak position recover in a fully reversible manner. The change in the sign of the band gap energy pressure dependence and the disappearance of the band edge luminescence indicate the pressure-induced direct-to-indirect band gap transition. Contrary to theoretical calculations, no substantial reduction of the transition pressure is observed in the nanocrystal cases compared to the bulk transition pressure.
机译:我们研究了InP纳米晶体中压力诱导的直接-共-间接带隙跃迁中的量子尺寸效应。将高达13 GPa的静水压力施加到钻石砧单元中的两种不同尺寸的lnP纳米晶体样品上。通过10 K的光致发光(PL)和荧光线变窄(FLN)技术研究了带隙压力的依赖性和发射态的性质。压力依赖性的FLN光谱表明,在高达9 GPa的压力下,发射态的性质与环境压力下的情况相似,这表明低于9 GPa不会发生直接到间接的转变。对于这两种尺寸,PL峰值能量都会随着压力的升高而呈现出强烈的蓝移,直到大约9至10 CPa。高于此压力,PL峰值位置会略微变为红色。超过12 GPa。带隙发射强度变得非常弱,并且陷阱发射在PL光谱中占主导地位。随着压力的释放。发光强度和峰位置均以完全可逆的方式恢复。带隙能量压力依赖性的符号变化和带边缘发光的消失表明压力引起的直接至间接带隙跃迁。与理论计算相反,与整体转变压力相比,在纳米晶体的情况下没有观察到转变压力的大幅降低。

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