Enhanced UV Photodetector Efficiency with a ZnO/Ga$_2$O$_3$ Heterojunction
Shashi Pandey, Swaroop Ganguly, Alok Shukla, Anurag Tripathi

TL;DR
This study demonstrates that coating ZnO with Ga$_2$O$_3$ enhances UV photodetector performance, showing increased responsivity and detectivity, and provides insights into the structural, optical, and electrical improvements achieved through heterojunction fabrication.
Contribution
The paper introduces a novel ZnO/Ga$_2$O$_3$ heterojunction fabrication method that significantly improves UV photodetector efficiency and stability compared to bare ZnO.
Findings
Maximum responsivity of 38 A/W for Ga$_2$O$_3$ coated ZnO
Detectivity reaching $145 imes 10^{14}$ Hz$^{1/2}$/W at 200 nm
Extended transient response times indicating improved device stability
Abstract
Heterostructures comprising uncoated ZnO and coated with thin layers of GaO were produced using spin-coating and subsequent hydrothermal processing. X-ray diffraction examination verifies the structural integrity of the synthesized heterostructures (HTs). Optical and photoluminescence spectra were recorded to assess the variation in absorption and emission of the GaO-coated HTs in comparison to the pristine ZnO. We conducted comparative density-functional theory (DFT) computations to corroborate the measured band gaps of both categories of HTs. To assess the stability of our devices, the transient response to on/off light switching under zero bias has been studied. The rise time () is 2300 (500) ms and the decay time () is 2700 (5000) ms have been observed for bare ZnO and ZnO/GaO HTs, respectively. A significant…
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