Quantum engineering of non-equilibrium efficient p-doping in ultra-wide band-gap nitrides

来源 :光:科学与应用(英文版) | 被引量 : 0次 | 上传用户:qiuxue6
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
Ultra-wide band-gap nitrides have huge potential in micro-and optoelectronics due to their tunable wide band-gap, high breakdown field and energy density, excellent chemical and thermal stability. However, their application has been severely hindered by the low p-doping efficiency, which is ascribed to the ultrahigh acceptor activation energy originated from the low valance band maximum. Here, a valance band modulation mode is proposed and a quantum engineering doping method is conducted to achieve high-efficient p-type ultra-wide band-gap nitrides, in which GaN quantum-dots are buried in nitride matrix to produce a new band edge and thus to tune the dopant activation energy. By non-equilibrium doping techniques, quantum engineering doped AlGaN:Mg with Al content of 60% is successfully fabricated. The Mg activation energy has been reduced to about 21 meV, and the hole concentration reaches higher than 1018 cm?3 at room temperature. Also, similar activation energies are obtained in AlGaN with other Al contents such as 50%and 70%, indicating the universality of the quantum engineering doping method. Moreover, deep-ultraviolet light-emission diodes are fabricated and the improved performance further demonstrates the validity and merit of the method. With the quantum material growth techniques developing, this method would be prevalently available and tremendously stimulate the promotion of ultra-wide band-gap semiconductor-based devices.
其他文献
随着近年来我国不断号召绿色发展、生态保护,人们的环保意识也有所提升,有关单位也提高了对环境保护的重视,逐步加强环境监测工作管理,确保环境监测数据全面准确、客观、真实。
Strong focusing on diffraction-limited spots is essential for many photonic applications and is particularly relevant for optical trapping;however, all currentl
期刊
With inherent orthogonality, both the spin angular momentum (SAM) and orbital angular momentum (OAM) of photons have been utilized to expand the dimensions of q
期刊
在社会经济的持续发展中,我国各行各业都实现了内部结构的不断优化与创新,进而与现代化的发展目标之间完美结合。在我国经济社会中,皮革工业是一项重要产业,在我国的市场竞争中发挥着十分重要的作用。但是因为皮革工业本身就是一项具有复杂操作程序的产业,皮革制造更是需要很多道工序来实现,因而在具体的皮革生产加工过程中,也会伴随着大量的废水产生。如果这些废水得不到有效治理,将会给周边的生态环境造成不利影响。基于此,本文对皮革工业园区中的制革废水污染防治理技术进行分析,以此来实现皮革生产制造污水的有效治理,确保其周边生态环
Vectorial optical fields (VOFs) exhibiting arbitrarily designed wavefronts and polarization distributions are highly desired in photonics. However, current meth
期刊
工业化的飞速发展带动了我国经济的整体发展,但是需要明确的是,如果以破坏环境作为经济发展的代价,将对人们的生活和身体健康造成严重影响。本文从如何治理大气污染、提高大气污染的治理效果入手,对大气污染防治工作的对策与措施展开研究。
Early and efficient disease diagnosis with low-cost point-of-care devices is gaining importance for personalized medicine and public health protection. Within t
期刊
Volumetric imaging of samples using fluorescence microscopy plays an important role in various fields including physical, medical and life sciences. Here we rep
期刊
The development of deep learning and open access to a substantial collection of imaging data together provide a potential solution for computational image trans
期刊
Integrating conventional optics into compact nanostructured surfaces is the goal of flat optics. Despite the enormous progress in this technology, there are sti
期刊