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1.
本文设计了V形和W形的空穴阻挡层(HBL)结构,改善空穴在AlGaN基深紫外激光二极管(DUV-LD)n型区的泄露问题.使用Crosslight软件,将参考型矩形、V形和W形三种空穴阻挡层结构进行仿真研究,分别比较了三种不同结构的DUV-LD能带、n区空穴浓度、辐射复合率、电光转换效率、有源区载流子浓度等特性,结果表明,具有W形空穴阻挡层的DUV-LD拥有更高的空穴有效势垒高度、更高的辐射复合率、更低的空穴泄露以及更好的斜率效率,可以有效降低深紫外激光二极管在n型区的空穴泄露,提升其光学和电学性能.  相似文献   

2.
为了改善深紫外激光二极管的性能,本文提出了有源区量子势垒n掺杂、p掺杂和n-p掺杂三种结构.利用Crosslight软件,对原始结构和有源区掺杂的三种结构进行仿真研究,比较四种结构的P-I特性曲线、V-I特性曲线、载流子浓度、辐射复合速率和能带图.仿真结果表明,有源区量子势垒n-p掺杂结构的性能更优,其阈值电压和阈值电流分别为4.40V和23.8mA;辐射复合速率达到1.64×1028cm-3/s;同一注入电流下电光转换效率达到42.1%,比原始结构增加了3.9%;改善了深紫外激光二极管的工作性能.  相似文献   

3.
针对AlGaN基多量子阱中有效的平衡载流子注入问题,研究了有源区势垒层中Al组分调制形成的非规则H形量子势垒对AlGaN基深紫外发光二极管(LED)器件性能的影响及载流子的输运行为。研究发现,与多量子阱中常用的单Al组分势垒相比,加入Al组分较高的双尖峰势垒可以有效地提高内量子效率和光输出功率。进一步研究表明,电子在有源区因凸起的尖峰势垒而得到了有效的阻挡,减少了电子的泄露,而空穴获得更多的动能从而穿过较高的势垒进入有源区。因此,采用非对称H形量子势垒的深紫外LED器件中载流子输运实现了较好的平衡,量子阱中的载流子复合速率远高于普通的深紫外发光二极管。  相似文献   

4.
本文提出了用双阶渐变阶梯和倒双阶渐变阶梯形电子阻挡层(EBL)以减少AlGaN基深紫外激光二极管(DUV-LDs)在p型区的电子泄露,并用Crosslight软件模拟仿真了双阶渐变阶梯和倒双阶渐变阶梯形EBL结构的光电特性,结果发现:具有倒双阶渐变阶梯形EBL的激光器拥有比双阶渐变阶梯形EBL激光器更高的斜率效率(SE),更高的输出功率,更低的阈值电流和阈值电压,更高的有效势垒高度和更低的电子泄露.这意味着前者拥有更强的抑制电子泄露的能力.在与矩形EBL结构对比中发现,所提出的结构还提高了有源区载流子浓度和辐射复合速率,进一步提高了DUV-LDs的光电性能.  相似文献   

5.
为了有效降低深紫外激光二极管(DUV-LD)在有源区的电子泄露,提出了一种新颖的具有倒梯矩形的电子阻挡层(EBL)结构。通过使用Crosslight软件将矩形,梯矩形和倒梯矩形三种不同的结构进行仿真研究,比较三种结构器件的能带图、辐射复合率、电子空穴浓度、P-I以及V-I特性等,得出倒梯矩形EBL更能有效地抑制电子的泄露,从而改善了器件的光学和电学性能。  相似文献   

6.
为了有效提高深紫外激光二极管的空穴注入效率和减少电子泄露,优化其性能,设计出了在基础矩形空穴存储层结构上改进后的山形空穴存储层和倒山形空穴存储层。使用Crosslight软件模拟仿真倒山形和山形空穴存储层结构的电子浓度、电子电流密度、能带图以及P-I特性曲线。结果显示山形空穴存储层激光器的光学和电学性能优于矩形和倒山形激光器,因此山形空穴存储层激光器能有效地增加有源区空穴注入和减少电子泄露,提高有源区载流子浓度和辐射复合速率,实现了激光器优越的光电性能。  相似文献   

7.
为了获得高效率的AlGaN基深紫外发光二极管,提出了具有渐变量子垒的氮极性结构来调控载流子的传输.通过氮极性结构在p型电子阻挡层中形成的反向极化诱导势垒,改善空穴注入和电子泄漏问题.另外研究了不同的渐变方向和渐变程度对器件性能的影响.模拟结果显示,在12nm的AlGaN量子垒上沿着(000-1)方向从Al组分0.65线性渐变到0.6,可以有效平衡量子垒的势垒高度和斜率,从而极大的增强空穴注入,光输出功率相较于传统结构提高了53.6%.该设计为电子泄漏和空穴注入问题提供了直接而有效的解决方案,在实现更高效率的深紫外发光二极管方面显示出广阔的前景.  相似文献   

8.
采用SiLENSe(Simulator of light emitters based on nitride semiconductors)软件仿真研究了AlxInyGa1-x-yN电子阻挡层(EBL)Al组分渐变方式对GaN基激光二极管(LD)光电性能的影响,实现了提高输出功率和电光转换效率的目的。文中提出的四种Al组分渐变方式分别是传统均匀组分、右阶梯渐变组分(0~0.07~0.16)、三角形渐变组分(0~0.16~0)、左阶梯渐变组分(0.16~0.07~0)。结果表明,与传统均匀组分EBL结构相比,Al组分阶梯渐变AlxInyGa1-x-yN EBL LD导带底的电子势垒显著提高,价带顶的空穴势垒降低。这主要是由于该结构能有效抑制电子泄漏和提高空穴注入效率,从而提高有源区载流子浓度,进而提高有源区辐射复合效率。当注入电流为0.48 A时,采用Al组分阶梯渐变AlxInyGa1-x-y...  相似文献   

9.
AlGaN基深紫外LED由于具有高调制带宽和小芯片尺寸,在紫外光通信领域受到越来越多的关注.本研究通过改变生长AlGaN量子垒层的Al源流量,生长了三种具有不同量子垒高度的深紫外LED,研究了量子垒高度对深紫外LED光电特性和调制特性的影响.研究发现,随着量子垒高度的增加,深紫外LED的光功率出现先增加后减小的趋势,量...  相似文献   

10.
紫外LED的发光功率和效率还远不能令人们满意,波长短于300 nm的深紫外LED的发光效率普遍较低。厘清高Al组分Al Ga N多量子阱结构的发光机制将有利于探索改善深紫外LED的发光效率的新途径、新方法。为此,本文通过金属有机气相外延技术外延生长了表面平整、界面清晰可辨且陡峭的高Al组分AlGa N多量子阱结构材料,并对其进行变温光致发光谱测试,结合数值计算,深入探讨了Al Ga N量子阱的发光机制。研究表明,量子阱中具有很强的局域化效应,其发光和局域激子的跳跃息息相关,而发光的猝灭则与局域激子的解局域以及位错引起的非辐射复合有关。  相似文献   

11.
The AlGaN-based deep ultraviolet light-emitting diodes(LED) with double electron blocking layers(d-EBLs) on both sides of the active region are investigated theoretically. They possess many excellent performances compared with the conventional structure with only a single electron blocking layer, such as a higher recombination rate, improved light output power and internal quantum efficiency(IQE). The reasons can be concluded as follows. On the one hand, the weakened electrostatic field within the quantum wells(QWs) enhances the electron–hole spatial overlap in QWs, and therefore increases the probability of radioactive recombination. On the other hand, the added n-AlGaN layer can not only prevent holes from overflowing into the n-side region but also act as another electron source, providing more electrons.  相似文献   

12.
13.
Usman  Muhammad  Malik  Shahzeb  Hussain  Masroor  Ali  Shazma  Saeed  Sana  Anwar  Abdur-Rehman  Munsif  Munaza 《Optical Review》2022,29(6):498-503
Optical Review - We present the enhancement of ultraviolet (UV) light-emitting diodes (LEDs) using numerical analysis. We have employed a compositionally graded quaternary (AlInGaN) electron...  相似文献   

14.
The AlGaN-based deep ultraviolet (DUV) light-emitting diodes (LEDs) with p-hBN layer are investigated numerically. In comparison with the conventional AlGaN DUV LEDs, the proposed LED can significantly improve the carrier injection, radiative efficiency, as well as the electroluminescence (EL) intensity under the same applied forward bias. Simultaneously, the light extraction efficiency in the LED using p-hBN instead of p-AlGaN exhibits a more than 250% increase at the applied voltage of 7.5 V due to the smaller loss of reflection and absorption of the emitted light.  相似文献   

15.
16.
The design of the active region structures, including the modifications of structures of the quantum barrier(QB) and electron blocking layer(EBL), in the deep ultraviolet(DUV) Al Ga N laser diode(LD) is investigated numerically with the Crosslight software. The analyses focus on electron and hole injection efficiency, electron leakage, hole diffusion,and radiative recombination rate. Compared with the reference QB structure, the step-like QB structure provides high radiative recombination and maximum output power. Subsequently, a comparative study is conducted on the performance characteristics with four different EBLs. For the EBL with different Al mole fraction layers, the higher Al-content Al Ga N EBL layer is located closely to the active region, leading the electron current leakage to lower, the carrier injection efficiency to increase, and the radiative recombination rate to improve.  相似文献   

17.
H Lu  T Yu  G Yuan  X Chen  Z Chen  G Chen  G Zhang 《Optics letters》2012,37(17):3693-3695
The optical polarization properties of staggered AlGaN-AlGaN/AlN quantum wells (QWs) are investigated using the theoretical model based on the k·p method. The numerical results show that the energy level order and coupling relation of the valence subband structure change in the staggered QWs and the trend is beneficial to TE polarized transition compared to that of conventional AlGaN/AlN QWs. As a result, the staggered QWs have much stronger TE-polarized emission than conventional AlGaN-based QWs, which can enhance the surface emission of deep ultraviolet (DUV) light-emitting diodes (LEDs). The polarization control by using staggered QWs can be applied in high efficiency DUV AlGaN-based LEDs.  相似文献   

18.
The conventional stationary Al content Al GaN electron blocking layer(EBL) in ultraviolet light-emitting diode(UV LED) is optimized by employing a linearly graded Al Ga N inserting layer which is 2.0 nm Al_(0.3) Ga_(0.7) N/5.0 nm Alx Ga_(1-x) N/8.0 nm Al_(0.3) Ga_(0.7) N with decreasing value of x. The results indicate that the internal quantum efficiency is significantly improved and the efficiency droop is mitigated by using the proposed structure. These improvements are attributed to the increase of the effective barrier height for electrons and the reduction of the effective barrier height for holes,which result in an increased hole injection efficiency and a decreased electron leakage into the p-type region. In addition,the linearly graded AlGaN inserting layer can generate more holes in EBL due to the polarization-induced hole doping and a tunneling effect probably occurs to enhance the hole transportation to the active regions, which will be beneficial to the radiative recombination.  相似文献   

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