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Investigation of the Electroluminescence Mechanism of GaN-Based Blue and Green Light-Emitting Diodes with Junction Temperature Range of 120–373 K

机译:120-373 K的结温和绿色发光二极管电致发光机理的研究

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摘要

Junction temperature (Tj) and current have important effects on light-emitting diode (LED) properties. Therefore, the electroluminescence (EL) spectra of blue and green LEDs were investigated in a Tj range of 120−373 K and in a current range of 80−240 mA based on accurate real-time measurements of Tj using an LED with a built-in sensor unit. Two maxima of the emission peak energy with changing Tj were observed for the green LED, while the blue LED showed one maximum. This was explained by the transition between the donor-bound excitons (DX) and free excitons A (FXA) in the green LED. At low temperatures, the emission peak energy, full width at half maximum (FWHM), and radiation power of the green LED increase rapidly with increasing current, while those of the blue LED increase slightly. This is because when the strong spatial potential fluctuation and low exciton mobility in the green LED is exhibited, with the current increasing, more bonded excitons are found in different potential valleys. With a shallower potential valley and higher exciton mobility, excitons are mostly bound around the potential minima. The higher threshold voltage of the LEDs at low temperatures may be due to the combined effects of the band gap, dynamic resistance, piezoelectric polarization, and electron-blocking layer (EBL).
机译:结温(TJ)和电流对发光二极管(LED)性质具有重要作用。因此,在120-373k的TJ范围内研究蓝色和绿色LED的电致发光(EL)光谱,并根据使用带有内置的LED的TJ的精确实时测量,在80-240 mA的电流范围内进行研究。在传感器单元中。对于绿色LED,观察到具有变化TJ的发射峰能的两个最大值,而蓝色LED显示出最大值。这是通过在绿色LED中的供体结合的激子(DX)和自由激子A(FXA)之间的过渡来解释。在低温下,发射峰值能量,半最大(FWHM)的全宽度以及绿色LED的辐射功率随着电流的增加而迅速增加,而蓝色LED的辐射功率略有增加。这是因为当展出绿色LED中强的空间势波动和低激发力,随着电流的增加,在不同的潜在山谷中发现了更多的粘合激子。随着较浅的潜在山谷和更高的激进流动性,激子主要围绕潜在的最小值约束。低温下LED的较高阈值电压可能是由于带隙,动态电阻,压电偏振和电子阻挡层(EBL)的组合效果。

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