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Adjusting amplitude of the stored optical solitons by inter-dot tunneling coupling in triple quantum dot molecules
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作者 王胤 周驷杰 +1 位作者 邓永和 陈桥 《Chinese Physics B》 SCIE EI CAS CSCD 2023年第5期433-441,共9页
We study the propagation properties of a probe field in an aligned asymmetric triple quantum dot molecule with both sides inter-dot tunneling coupling effect. It is shown that the probe field can form optical soliton ... We study the propagation properties of a probe field in an aligned asymmetric triple quantum dot molecule with both sides inter-dot tunneling coupling effect. It is shown that the probe field can form optical soliton due to the destructive quantum interference induced by the quantum inter-dot tunneling coupling effect. Interestingly, these optical solitons can be stored and retrieved by adjusting single or double inter-dot tunneling coupling effect, different from that light memory in the ultra-cold atom system. Furthermore, we also find that the amplitude of the stored optical soliton can be adjusted by the strength of the single or double inter-dot tunneling coupling. It is possible to improve the stability and the fidelity of the optical information in the process of the storage and retrieval in semiconductor quantum dots devices. 展开更多
关键词 tunneling induced transparency triple quantum dot molecules the storage and retrieval of the optical solitons
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Voltage-controlled transmission through a dielectric slab doped with quantum dot molecules
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作者 Lida Ebrahimi Zohravi Mohammad Mahmoudi 《Chinese Optics Letters》 SCIE EI CAS CSCD 2014年第4期59-61,共3页
Transmission and reflection of an electromagnetic pulse through a dielectric slab doped with the quantum dot molecules are investigated. It is shown that the transmission and reflection coefficients depend on the inte... Transmission and reflection of an electromagnetic pulse through a dielectric slab doped with the quantum dot molecules are investigated. It is shown that the transmission and reflection coefficients depend on the inter-dot tunneling effect and can be simply controlled by applying a gate voltage without any changing in the refractive index or thickness of the slab. Such simple controlling prepares an active beam splitter which can be used in all optical switching, optical limiting, and other optical systems. 展开更多
关键词 Voltage-controlled transmission through a dielectric slab doped with quantum dot molecules
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Injector Quantum Dot Molecule Infrared Photodetector:A Concept for Efficient Carrier Injection
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作者 Thomas Gebhard 《Nano-Micro Letters》 SCIE EI CAS 2011年第2期121-128,共8页
Quantum dot infrared photodetectors are expected to be a competitive technology at high oper ation temperatures in the long and very long wavelength infrared spectral range.Despite the fact that they already achieved ... Quantum dot infrared photodetectors are expected to be a competitive technology at high oper ation temperatures in the long and very long wavelength infrared spectral range.Despite the fact that they already achieved notable success,the performance suffers from the thermionic emission of electrons from the quantum dots at elevated temperatures resulting in a decreasing responsivity.In order to provide an efficient carrier injection at high temperatures,quantum dot infrared photodetectors can be separated into two parts:an injection part and a detection part,so that each part can be separately optimized.In order to integrate such functionality into a device,a new class of quantum dot infrared photodetectors using quantum dot molecules will be introduced.In addition to a general discussion simulation results suggest a possibility to realize such a device. 展开更多
关键词 quantum dot infrared photodetector INJECTION quantum dot molecule High temperature operation RESPONSIVITY
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Growth of Pb S nanoclusters on specific sites of programmed oligodeoxynucleotides
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作者 陆颖 滕翠娟 +4 位作者 李颖 王惠 徐春华 胡书新 李明 《Chinese Physics B》 SCIE EI CAS CSCD 2015年第1期398-403,共6页
We develope a method to synthesize Pb S nanoclusters(NCs) using guanine-containing oligodeoxynucleotides(ODNs)as templates. The NCs on the ODNs are ultra small(ranging from ~ 0.5 nm to 2.1 nm) and luminescent i... We develope a method to synthesize Pb S nanoclusters(NCs) using guanine-containing oligodeoxynucleotides(ODNs)as templates. The NCs on the ODNs are ultra small(ranging from ~ 0.5 nm to 2.1 nm) and luminescent in the visible region. They are characterized by photoluminescence(PL) spectra, transmission electron microscopy(TEM), and X-ray powder diffraction(XRD). The ODN–NC complexes can be used as customer-designed fluorophores which do not have the problem of multiple conjugations. The same method enables us to fabricate Pb S quantum dot molecules and connect them into nanowires, expanding their potential applications in molecule electronics and quantum computing. 展开更多
关键词 Pb S nanoclusters quantum dot molecules OLIGODEOXYNUCLEOTIDES PHOTOLUMINESCENCE
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Improved performance of CdSe/ZnS quantum dot light-emitting diodes through doping with small molecule CBP
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作者 林钰涵 黄叶 +2 位作者 朱钱鹏 张庚庚 胡俊涛 《Optoelectronics Letters》 EI 2021年第11期656-660,共5页
The poor film formation of Cd Se/Zn S quantum dots(QDs) during spin-coating makes a substantial impact on the device performance of quantum dot light-emitting diodes(QLEDs). This work proposes a method to improve the ... The poor film formation of Cd Se/Zn S quantum dots(QDs) during spin-coating makes a substantial impact on the device performance of quantum dot light-emitting diodes(QLEDs). This work proposes a method to improve the morphology of the quantum dot light-emitting layer(EML) by adding small organic molecular 4,4'-Bis(9 H-carbazol-9-yl) biphenyl(CBP) into the layer. Its surface roughness reduces from 6.21 nm to 2.71 nm, which guarantees a good contact between hole transport layer(HTL) and EML. Consequently, the Cd Se/Zn S QDs:CBP based QLED achieves maximum external quantum efficiency(EQE) of 5.86%, and maximum brightness of 10 363 cd/m^(2). It is demonstrated that the additive of small organic molecules could be an effective way to improve the brightness and the efficiency of QLEDs. 展开更多
关键词 QDs Improved performance of CdSe/ZnS quantum dot light-emitting diodes through doping with small molecule CBP ZnS
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