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Entangling Two Atomic Ensembles Trapped in Separated Cavities
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作者 郑仕标 卢道明 《Communications in Theoretical Physics》 SCIE CAS CSCD 2011年第12期1075-1078,共4页
We propose a scheme for the generation of two collections of atoms trapped in distant cavities connected by an optical fiber.The virtual photon exchange leads to the entanglement between these two atomic ensembles.Dur... We propose a scheme for the generation of two collections of atoms trapped in distant cavities connected by an optical fiber.The virtual photon exchange leads to the entanglement between these two atomic ensembles.During the operation the atomic system,cavity modes,and fiber are not excited,which is important in view of decoherence. 展开更多
关键词 atomic ensemble ENTANGLEMENT virtual photon exchange
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Techno-economic analysis of green hydrogen production by a floating solar photovoltaic system for industrial decarbonization
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作者 Rahma Muthia Anastasia Segari Putri Pramudya +1 位作者 Mochamad Rafly Maulana Widodo Wahyu Purwanto 《Clean Energy》 EI CSCD 2024年第4期1-14,共14页
This study proposes a conceptual design of green hydrogen production via proton exchange membrane electrolysis powered by a floating solar photovoltaic system.The system contributes to industrial decarbonization in wh... This study proposes a conceptual design of green hydrogen production via proton exchange membrane electrolysis powered by a floating solar photovoltaic system.The system contributes to industrial decarbonization in which hydrogen blending with natural gas is proposed as an approach to smooth the energy transition.The proposed design addresses the challenge of supplying a continuous flow-rate of green hydrogen,which is typically demanded by industrial end users.This study particularly considers a realistic area required for the installation of a floating solar photovoltaic system.To enable the green hydrogen production of 7.5 million standard cubic feet per day,the required structure includes the floating solar photovoltaic system and Li-ion batteries with the nominal capacities of 518.4 megawatts and 780.8 megawatt-hours.This is equivalent to the requirement for 1524765 photovoltaic modules and 3718 Li-ion batteries.The assessment confirms the technical viability of the proposed concept of green hydrogen production,transportation and blending.While the present commercialization is hindered by economics due to a high green hydrogen production cost of USD 26.95 per kg,this green hydrogen pathway is expected to be competitive with grey hydrogen produced via coal gasification and via natural gas steam reforming by 2043 and 2047,respectively. 展开更多
关键词 floating solar photovoltaics gas blending green hydrogen industrial decarbonization lithium-ion battery photon exchange membrane electrolysis
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