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Modified-DBR-based semi-omnidirectional multilayer anti-reflection coating for tandem solar cells 被引量:1
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作者 Ali Bahrami Shahram Mohammadnejad Nima Jouyandeh Abkenar 《Chinese Physics B》 SCIE EI CAS CSCD 2014年第2期609-613,共5页
In this paper, multilayer antireflection coatings are designed by modifying the thickness of two and three paired layer distributed Bragg reflector (DBR) structure. Our proposed DBR-based structures show antireflect... In this paper, multilayer antireflection coatings are designed by modifying the thickness of two and three paired layer distributed Bragg reflector (DBR) structure. Our proposed DBR-based structures show antireflection behaviors, in spite of the reflection treatment in traditional DBR structures. Firstly, the proposed structures are designed to be equivalent to the theoretical ideal triple-layer (TL) antireflection coating (ARC). Therefore, the problem of finding a suitable material for the middle layer of triple structure is solved. Simulation results show the significant equivalency for the reflectance of proposed structures to the ideal TL ARC at the same wavelengths and incident angles. Also, the design of the structure is changed in order to present the constant reflectance coefficient over a wide range of wavelengths. This structure enhances the omni-directionality of the multilayer ARC. 展开更多
关键词 antireflection coating distributed bragg reflector solar cell
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Delta-doped quantum wire tunnel junction for highly concentrated solar cells
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作者 Ali Bahrami Mahyar Dehdast +1 位作者 Shahram Mohammadnejad Habib Badri Ghavifekr 《Chinese Physics B》 SCIE EI CAS CSCD 2019年第4期275-279,共5页
We propose a novel structure for tunnel junction based on delta-doped AlGaAs/GaAs quantum wires. Higher spatial confinement of quantum wires alongside the increased effective doping concentration in the delta-doped re... We propose a novel structure for tunnel junction based on delta-doped AlGaAs/GaAs quantum wires. Higher spatial confinement of quantum wires alongside the increased effective doping concentration in the delta-doped regions extremely increase the peak tunneling current and enhance the performance of tunnel junction. The proposed structure can be used as tunnel junction in the multijunction solar cells under the highest possible thermodynamically limited solar concentration.The combination of the quantum wire with the delta-doped structure can be of benefit to the solar cells' advantages including higher number of sub-bands and high degeneracy. Simulation results show a voltage drop of 40 mV due to the proposed tunnel junction used in a multijunction solar cell which presents an extremely low resistance to the achieved peak tunneling current. 展开更多
关键词 DELTA-DOPING QUANTUM wire solar cell TUNNEL JUNCTION
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An error-free protocol for quantum entanglement distribution in long-distance quantum communication 被引量:12
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作者 SALEMIAN Shamsolah MOHAMMADNEJAD Shahram 《Chinese Science Bulletin》 SCIE EI CAS 2011年第7期618-625,共8页
Quantum entanglement distribution is an essential part of quantum communication and computation protocols. Here, linear optic elements are employed for the distribution of quantum entanglement over a long distance. Po... Quantum entanglement distribution is an essential part of quantum communication and computation protocols. Here, linear optic elements are employed for the distribution of quantum entanglement over a long distance. Polarization beam splitters and wave plates are used to realize an error-free protocol for broadcasting quantum entanglement in optical quantum communication. This protocol can determine the maximum distance of quantum communication without decoherence. Error detection and error correc-tion are performed in the proposed scheme. In other words, if there is a bit flip along the quantum channel, the end stations (Alice and Bob) can detect this state change and obtain the correct state (entangled photon) at another port. Existing general error detec-tion protocols are based on the quantum controlled-NOT (CNOT) or similar quantum logic operations, which are very difficult to implement experimentally. Here we present a feasible scheme for the implementation of entanglement distribution based on a linear optics element that does not need a quantum CNOT gate. 展开更多
关键词 光量子通信 量子纠缠 协议 长距离 分发 错误检测 量子逻辑运算 光学元件
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