Photoresponse Enhancement in Ge MSM Photodetector With Ge Micropillar Array

被引:8
作者
Zhang, Ningning [1 ]
Shao, Jifang [1 ]
Hao, Yuekai [1 ]
Chen, Yu [1 ]
Zhang, Zhifang [2 ,3 ]
Zhang, Yichi [1 ]
Gao, Liang [1 ]
Miao, Tian [1 ]
Zhong, Zhenyang [2 ,3 ]
Hu, Huiyong [1 ]
Wang, Liming [1 ]
机构
[1] Xidian Univ, Sch Microelect, Wide Bandgap Semicond Technol Disciplines State Ke, Xian 710071, Peoples R China
[2] Fudan Univ, State Key Lab Surface Phys, Shanghai 200438, Peoples R China
[3] Fudan Univ, Dept Phys, Shanghai 200438, Peoples R China
关键词
Germanium; Photodetectors; Electrodes; Absorption; Substrates; Optical imaging; Optical device fabrication; Absorption enhance; germanium (Ge) photodetector; guided modes; micropillar array; BROAD-BAND; LIGHT; NANOPILLARS; GENERATION; DESIGN;
D O I
10.1109/TED.2022.3231805
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Improving detection efficiency of Ge photodetector near the absorptance edge is crucial for fiber-optic telecommunication. Here, we report the unique photodetection properties of germanium (Ge) metal-semiconductor-metal (MSM) photodetector with Ge micropillar array. The responsivity and detectivity of the device at 1550 and 1990 nm are studied. When compared with the Ge photodetector without micropillar, the responsivity and detectivity of micropillar Ge device are improved by 2.76 and 4.21 times at 1550 nm, respectively. This phenomenon is mainly associated with the enhanced absorption efficiency by geometrical light trapping effect and guided modes supported in the micropillar array. Particularly, the values of responsivity and detectivity in the device with Ge micropillar array are enhanced over 29.9 and 37.1 times at 1990 nm than the results in the device without micropillar, which are quite larger than the values at 1550 nm. This feature is related to that the suitable position of absorption enhancement caused by the micropillar array, which can result in the efficiently separation and suppressed recombination of photogenerated carriers under bias voltage. This work provides a feasible approach to broaden the detection wavelength of Ge-based photodetectors, enhance the absorption near the absorption edge, and improve the detection performance.
引用
收藏
页码:612 / 618
页数:7
相关论文
共 48 条
[1]   Black Germanium Photodetector Exceeds External Quantum Efficiency of 160% [J].
An, Shu ;
Liao, Yikai ;
Shin, Sangho ;
Kim, Munho .
ADVANCED MATERIALS TECHNOLOGIES, 2022, 7 (01)
[2]   Photonic-plasmonic mode coupling in nanopillar Ge-on-Si PIN photodiodes [J].
Augel, Lion ;
Schlipf, Jon ;
Bullert, Sergej ;
Buerzele, Sebastian ;
Schulze, Joerg ;
Fischer, Inga A. .
SCIENTIFIC REPORTS, 2021, 11 (01)
[3]  
Brongersma ML, 2014, NAT MATER, V13, P451, DOI [10.1038/NMAT3921, 10.1038/nmat3921]
[4]   Resonant Germanium Nanoantenna Photodetectors [J].
Cao, Linyou ;
Park, Joon-Shik ;
Fan, Pengyu ;
Clemens, Bruce ;
Brongersma, Mark L. .
NANO LETTERS, 2010, 10 (04) :1229-1233
[5]   Switch type PANI/ZnO core-shell microwire heterojunction for UV photodetection [J].
Chen, Yihan ;
Su, Longxing ;
Jiang, Mingming ;
Fang, Xiaosheng .
JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY, 2022, 105 :259-265
[6]   Nanostructure arrays in free-space: optical properties and applications [J].
Collin, Stephane .
REPORTS ON PROGRESS IN PHYSICS, 2014, 77 (12)
[7]   Design and Modeling of High-Performance DBR-Based Resonant-Cavity-Enhanced GeSn Photodetector for Fiber-Optic Telecommunication Networks [J].
Ghosh, Soumava ;
Kumar, Harshvardhan ;
Mukhopadhyay, Bratati ;
Chang, Guo-En .
IEEE SENSORS JOURNAL, 2021, 21 (08) :9900-9908
[8]   Fundamentals of the nanowire solar cell: Optimization of the open circuit voltage [J].
Haverkort, Jos E. M. ;
Garnett, Erik C. ;
Bakkers, Erik P. A. M. .
APPLIED PHYSICS REVIEWS, 2018, 5 (03)
[9]   ELLIPSOMETRIC STUDY OF SILICON SURFACE DAMAGE IN ELECTRON-CYCLOTRON RESONANCE PLASMA-ETCHING USING CF4 AND SF6 [J].
HAVERLAG, M ;
VENDER, D ;
OEHRLEIN, GS .
APPLIED PHYSICS LETTERS, 1992, 61 (24) :2875-2877
[10]   Rational geometrical design of multi-diameter nanopillars for efficient light harvesting [J].
Hua, Bo ;
Wang, Baomin ;
Yu, Miao ;
Leu, Paul W. ;
Fan, Zhiyong .
NANO ENERGY, 2013, 2 (05) :951-957