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Field experiment for blasting crater 被引量:7
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作者 YE Tu-qiang 《Journal of China University of Mining and Technology》 EI 2008年第2期224-228,共5页
A series of single hole blasting crater experiments and a variable distance multi-hole simultaneous blasting experiment was carried in the Yunfu Troilite Mine,according to the Livingston blasting crater theory.We intr... A series of single hole blasting crater experiments and a variable distance multi-hole simultaneous blasting experiment was carried in the Yunfu Troilite Mine,according to the Livingston blasting crater theory.We introduce in detail,our methodology of data collection and processing from our experiments.Based on the burying depth of the explosives,the blasting crater volume was fitted by the method of least squares and the characteristic curve of the blasting crater was obtained using the MATLAB soft- ware.From this third degree polynomial,we have derived the optimal burying depth,the critical burying depth and the optimal explosive specific charge of the blasting crater. 展开更多
关键词 blasting crater collecting and processing of data optimal burying depth critical burying depth optimal explosive specific charge
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Bipolar-barrier tunnel heterostructures for high-sensitivity mid-wave infrared photodetection
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作者 Fakun Wang Song Zhu +11 位作者 Wenduo Chen Ruihuan Duan Tengfei Dai Hui Ma Congliao Yan Shi Fang Jianbo Yu Yue Zhang Qikan Dong Wenjie Deng Zheng Liu Qi Jie Wang 《Light(Science & Applications)》 2025年第9期2595-2604,共10页
The rapid development of modern infrared optoelectronic technology has driven a growing demand for high-sensitivity mid-wave infrared(MWIR)photodetectors capable of reliable room-temperature operation.Achieving optima... The rapid development of modern infrared optoelectronic technology has driven a growing demand for high-sensitivity mid-wave infrared(MWIR)photodetectors capable of reliable room-temperature operation.Achieving optimal specific detectivity,a critical performance metric for MWIR photodetection,remains challenging due to inherent limitations imposed such as high dark current,low optical absorption,or both.To address these challenges,we present an approach based on a bipolar-barrier architecture featuring a black phosphorus(BP)/MoTe_(2)/BP tunnel heterostructure integrated with an Au reflector.This configuration delivers simultaneous electrical and optical enhancement,effectively suppressing dark currents and significantly increasing optical absorption.The bipolar-barrier structure minimizes dark current by blocking thermally excited and bias-induced carrier leakage,while facilitating efficient tunneling of photogenerated carriers via trap-assisted photogating mechanisms.In addition,the Au reflector enhances optical absorption through interference effects.As a result,the heterostructure achieves remarkable performance metrics,including a room-temperature specific detectivity of~3.0×10^(10)cm Hz0.5 W^(-1),a high responsivity of~4 A W^(-1),and an external quantum efficiency of~140%within the MWIR range.These results establish the bipolar-barrier tunnel heterostructure as a highly efficient platform,paving the way for the next generation of advanced infrared optoelectronic devices. 展开更多
关键词 optimal specific detectivitya dark current bipolar barrier modern infrared optoelectronic technology optical absorption specific detectivity mid wave infrared photodetection tunnel heterostructure
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