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High-intensity spatial-mode steerable frequency up-converter toward on-chip integration
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作者 Haizhou Huang Huaixi Chen +7 位作者 Huagang Liu Zhi Zhang Xinkai Feng Jiaying Chen hongchun wu Jing Deng Wanguo Liang Wenxiong Lin 《Opto-Electronic Science》 2024年第4期12-20,共9页
Integrated photonic devices are essential for on-chip optical communication,optical-electronic systems,and quantum information sciences.To develop a high-fidelity interface between photonics in various frequency domai... Integrated photonic devices are essential for on-chip optical communication,optical-electronic systems,and quantum information sciences.To develop a high-fidelity interface between photonics in various frequency domains without disturbing their quantum properties,nonlinear frequency conversion,typically steered with the quadratic(χ2)process,should be considered.Furthermore,another degree of freedom in steering the spatial modes during theχ2 process,with unprecedent mode intensity is proposed here by modulating the lithium niobate(LN)waveguide-based inter-mode quasi-phasematching conditions with both temperature and wavelength parameters.Under high incident light intensities(25 and 27.8 dBm for the pump and the signal lights,respectively),mode conversion at the sum-frequency wavelength with sufficient high output power(−7–8 dBm)among the TM01,TM10,and TM00 modes is realized automatically with characterized broad temperature(ΔT≥8°C)and wavelength windows(Δλ≥1 nm),avoiding the previous efforts in carefully preparing the signal or pump modes.The results prove that high-intensity spatial modes can be prepared at arbitrary transparent wavelength of theχ2 media toward on-chip integration,which facilitates the development of chip-based communication and quantum information systems because spatial correlations can be applied to generate hyperentangled states and provide additional robustness in quantum error correction with the extended Hilbert space. 展开更多
关键词 integrated photonics LN waveguide sum-frequency generation spatial-mode steering on-chip integration
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快中子反应堆--我国核能发展道路上的关键一环
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作者 吴宏春 《大学科普》 2023年第1期4-6,共3页
2000年5月,第四代核能系统国际论坛召开,会议确定了六种需要进一步研究和发展的第四代反应堆候选堆型,其中快中子反应堆(简称“快堆”)占据50%,我国很早确立了“压水堆-快堆-聚变堆”的核能发展“三步走”战略路线。快堆,作为三步走中... 2000年5月,第四代核能系统国际论坛召开,会议确定了六种需要进一步研究和发展的第四代反应堆候选堆型,其中快中子反应堆(简称“快堆”)占据50%,我国很早确立了“压水堆-快堆-聚变堆”的核能发展“三步走”战略路线。快堆,作为三步走中承上启下的关键环节,在“碳达峰、碳中和”的路线上具有重要的战略意义和科学价值。 展开更多
关键词 核能发展 碳中和 研究和发展 快中子反应堆 三步走 战略路线 第四代核能系统 压水堆
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