Yingda Chen
Sun Yat-sen University
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Featured researches published by Yingda Chen.
Applied Physics Letters | 2003
Xue-Hua Wang; J. F. Xu; H. M. Su; Z. H. Zeng; Yingda Chen; He-Zhou Wang; Yee Kwong Pang; Wing Yim Tam
In this report, we present three-dimensional photonic crystals fabricated by a four-beam holographic lithography method using visible photoinduced polymerization. High-quality face-centered-cubic single crystals with a large range of polymeric matrix volume fraction were fabricated using optimal conditions obtained from computer simulations. Optical measurements of the crystals showing photonic band-gap-like behavior are presented for different polymeric matrix volume fractions.
Applied Physics Letters | 2005
Yongchun Zhong; S. A. Zhu; Huilan Su; H. Z. Wang; J. Chen; Z. H. Zeng; Yingda Chen
Photonic crystal with diamond-like structure, which exists a large absolute band gap and at lower refractive index contrast of n/spl ges/2.05 is enough to open a complete band gap, was fabricated by holographic lithography.
Applied Physics Letters | 2015
Yingda Chen; Hualong Wu; Enze Han; Guanglong Yue; Zimin Chen; Zhisheng Wu; Gang Wang; Hao Jiang
High hole concentration was achieved in Mg-doped AlxGa1−xN (x ∼ 0.4) by using indium-surfactant-assisted delta doping method. A maximum carrier concentration of 4.75 × 1018 cm−3 was obtained, which is three times higher than that of the conventionally delta-doped sample. Sheet resistivity as low as 2.46 × 104 Ω/sq was realized, benefiting from the high hole concentration (p). Analysis results show that the Mg incorporation is effectively enhanced, while the compensation ratio and acceptor activation energy (EA) are significantly reduced by using In surfactant. It was also found that the In surfactant may induce stronger valence-band modulation, contributing to the decrease of EA and the increase of p.
Applied Physics Express | 2013
Yingda Chen; Hualong Wu; Guanglong Yue; Zimin Chen; Zhiyuan Zheng; Zhisheng Wu; Gang Wang; Hao Jiang
An indium-surfactant-assisted delta doping method is reported to enhance the hole concentration and doping efficiency of Mg-doped p-type GaN grown by metal organic chemical vapor deposition. The hole concentration is increased to 1.5×1018 cm-3 by using this method, which is 92% higher than that of conventional delta doping. This higher carrier concentration leads to an improved doping efficiency of 12%. Secondary ion mass spectroscopy reveals that the Mg incorporation is increased by the In surfactant. Photoluminescence analysis suggests that the nitrogen vacancies may be suppressed by the induced indium. Temperature-dependent Hall measurements indicate that the Mg ionization energy and compensation ratio are reduced by the In surfactant.
Applied Physics Express | 2016
Hualong Wu; Weicong Wu; Hongxian Zhang; Yingda Chen; Zhisheng Wu; Gang Wang; Hao Jiang
Solar-blind avalanche photodiodes were fabricated with an all AlGaN-based epitaxial structure on sapphire by metal–organic chemical vapor deposition. The devices demonstrate a maximum responsivity of 114.1 mA/W at 278 nm and zero bias, corresponding to an external quantum efficiency (EQE) of 52.7%. The EQE improves to 64.8% under a bias of −10 V. Avalanche gain higher than 2 × 104 was obtained at a bias of −140 V. The high performance is attributed to the all AlGaN-based p–i–n structure comprised of undoped and Si-doped n-type Al0.4Ga0.6N on a high quality AlN layer and highly conductive p-type AlGaN grown with In-surfactant-assisted Mg-delta doping.
Applied Physics Letters | 2013
Zhiyuan Zheng; Zimin Chen; Yingda Chen; Hualong Wu; Shanjin Huang; Bingfeng Fan; Zhisheng Wu; Gang Wang; Hao Jiang
Hole transport control and carrier injection improvement have been demonstrated in the InGaN/GaN light-emitting diodes (LEDs) with step-stage multiple-quantum-well (MQW) structure and Si-doped hole-blocking barriers. Single-wavelength emission was obtained under electrical pumping in these LEDs by utilizing hole-blocking effect. The light emission around 450 nm showed a substantial increase compared with the reference sample with single or step-stage indium-content MQWs. The droop behavior and wavelength stability were also improved significantly. These improvements were attributed to the enhanced carrier injection to the active region due to the alleviation of the quantum-confined Stark effect and the effective hole-blocking effect of the Si-doped barriers.
Applied Physics Letters | 2012
Zhiyuan Zheng; Zimin Chen; Yingda Chen; Shanjin Huang; Bingfeng Fan; Yulun Xian; Weiqing Jia; Zhisheng Wu; Gang Wang; Hao Jiang
We report the anomalous mobility properties of Si-delta-doped GaN with periodically doping profile. Samples with different delta-doping periods or with varied Si source flow were investigated. It is found that for the short delta-doping-period (<26.5 nm) samples, the Hall mobility increases with decreasing electron concentration; while for the longer-doping-period samples, the situation is just the opposite. To interpret this observation, a two-layer model has been built up for long-period samples based on secondary ion mass spectroscopy measurements. The fitting results using this model are well consistent with the experimental data.
IEEE\/OSA Journal of Display Technology | 2013
Zhiyuan Zheng; Zimin Chen; Yingda Chen; Hualong Wu; Shanjin Huang; Bingfeng Fan; Zhisheng Wu; Gang Wang; Hao Jiang
We report the observation of electroluminescence from the first to fourth quantum wells (QWs) from the p -GaN layer in InGaN/GaN multiple-QW light-emitting diodes (LEDs) with various indium contents (4%-16%) in each QW. The investigated LED sample showed a lower turn-on voltage and ideality factor as well as a reduction of etching pit density compared with the reference sample. Also, the X-ray reciprocal space maps revealed a partial strain relaxation in the active region. The enhanced hole injection efficiency was attributed to the weakening of strain-induced polarization field in the QWs and the good crystalline quality.
IEEE\/OSA Journal of Display Technology | 2013
Zhiyuan Zheng; Zimin Chen; Yingda Chen; Hualong Wu; Bingfeng Fan; Zhisheng Wu; Gang Wang; Hao Jiang
In this study, we have systematically investigated the effect of Si doping level in the n-cladding layer on the performance of InGaN/GaN-based light-emitting diodes (LEDs). Detailed structural, optical and electrical properties of the sample with different Si doping level were studied. Based on these investigations, it was found that with a low level of Si doping (0.738 nmol/min, ~ 5.4×1017 cm3), the subsequent multiple-quantum-well (MQW) structure showed superior crystalline quality with low-density threading dislocations (TDs); however, the operation voltage of the LED chips became unbearable. On the other hand, the highly-doped (14.40 nmol/min, ~ 1.1×1019 cm3) samples showed a substantially lower operation voltage, but the MQW quality deteriorated with much higher TD density. Finally, the effect of inserting a 100-nm-thick undoped spacer GaN layer between the n-cladding layer and active layers was also investigated. The electrical and emission properties both deteriorated while the crystalline quality improved for LEDs with this structure, proving the importance of electron injection on the performance of LEDs.
Physica Status Solidi B-basic Solid State Physics | 2015
Yingda Chen; Hualong Wu; Guanglong Yue; Zimin Chen; Zhiyuan Zheng; Zhisheng Wu; Gang Wang; Hao Jiang