This paper proposes a sub-critical nuclear energy system driven by fusion neutron source, FDS, which can be used to transmute long-lived radioactive wastes and to produce fissile nuclear fuel as a way for early applic...This paper proposes a sub-critical nuclear energy system driven by fusion neutron source, FDS, which can be used to transmute long-lived radioactive wastes and to produce fissile nuclear fuel as a way for early application of fusion technology. The necessity and feasibility to develop that system in China are illustrated on the basis of prediction of the demand of energy source in the first half of the 21th century, the status of current fission energy supply and the progress in fusion technology in the world. The characteristics of fusion neutron driver and the potential for transmutation of long-lived nuclear wastes and breeding of fissile nuclear fuel in a blanket are analyzed. A scenario of development steps is proposed.展开更多
The change of electrical performances of silicon-germanium (SiGe)heterojunction bipolar transistor (HBT) and Si bipolar junction transistor (BJT) was studied as afunction of reactor fast neutron radiation fluence. Alt...The change of electrical performances of silicon-germanium (SiGe)heterojunction bipolar transistor (HBT) and Si bipolar junction transistor (BJT) was studied as afunction of reactor fast neutron radiation fluence. Alter neutron irradiation, the collector currentI_c and the current gain beta decrease, and the base current I_b increases generally for SiGe HBT.The higher the neutron irradiation fluence is, the larger I_b increases. For conventional Si BJT,I_c and I_b increase as well as beta decreases much larger than SiGe HBT at the same fluence. It isshown that SiGe HBT has a larger anti-radiation threshold and better anti-radiation performance thanSi BJT. The mechanism of performance changes induced by irradiation was preliminarily discussed.展开更多
Displacement damage effects on the charge-coupled device(CCD)induced by neutrons at the back-streaming white neutron source(Back-n)in the China Spallation Neutron Source(CSNS)are analyzed according to an online irradi...Displacement damage effects on the charge-coupled device(CCD)induced by neutrons at the back-streaming white neutron source(Back-n)in the China Spallation Neutron Source(CSNS)are analyzed according to an online irradiation experiment.The hot pixels,random telegraph signal(RTS),mean dark signal,dark current and dark signal non-uniformity(DSNU)induced by Back-n are presented.The dark current is calculated according to the mean dark signal at various integration times.The single-particle displacement damage and transient response are also observed based on the online measurement data.The trends of hot pixels,mean dark signal,DSNU and RTS degradation are related to the integration time and irradiation fluence.The mean dark signal,dark current and DSNU2 are nearly linear with neutron irradiation fluence when nearly all the pixels do not reach saturation.In addition,the mechanisms of the displacement damage effects on the CCD are demonstrated by combining the experimental results and technology computer-aided design(TCAD)simulation.Radiation-induced traps in the space charge region of the CCD will act as generation/recombination centers of electron-hole pairs,leading to an increase in the dark signal.展开更多
China plans to build an experimental fast neutron breeding reactor by 2000 to lay a solid technological foundation for the construction of commercial fast neutron reactors. The preliminary designs for the facility are...China plans to build an experimental fast neutron breeding reactor by 2000 to lay a solid technological foundation for the construction of commercial fast neutron reactors. The preliminary designs for the facility are expected to be completed by the end of this year. The facility, to be owned by the Chinese Academy of Nuclear Energy, will have a designed thermal power of 65 MW and an electricity generating output of 20 MW. Development of fast neutron reactors展开更多
中子散射技术利用中子不带电、穿透力极强、能直接鉴别核素、较之 X 射线对轻元素灵敏、具有磁矩和粒子、波动二重性等特点,使之成为一种独特的、从原子和分子尺度上研究各种物质结构和微观世界运动规律的高新技术。中国先进研究堆 (CA...中子散射技术利用中子不带电、穿透力极强、能直接鉴别核素、较之 X 射线对轻元素灵敏、具有磁矩和粒子、波动二重性等特点,使之成为一种独特的、从原子和分子尺度上研究各种物质结构和微观世界运动规律的高新技术。中国先进研究堆 (CARR)上的中子散射工程将充分利用中国先进研究堆为中子散射工程提供的高通量、具有冷中子源、切向水平孔道等有利条件,建造三台新谱仪,更新原有的五台谱仪,瞄准世界先进水平,建立起研究手段基本配套、基本上覆盖中子散射研究的主要领域、强调应用又具备必要的基础研究能力的中子散射设备,为生命科学、材料科学、物理、化学、地矿、环境等各种学科及工程技术方面的研究,为国防工业和国民经济的应用提供先进的中子散射技术。其最终目标是建立起符合我国国情、其综合研究能力与世界先进水平接轨的中子散射国家重点实验室,使之成为我国二十一世纪中子散射研究和应用的中心及人才培养基地。展开更多
文摘This paper proposes a sub-critical nuclear energy system driven by fusion neutron source, FDS, which can be used to transmute long-lived radioactive wastes and to produce fissile nuclear fuel as a way for early application of fusion technology. The necessity and feasibility to develop that system in China are illustrated on the basis of prediction of the demand of energy source in the first half of the 21th century, the status of current fission energy supply and the progress in fusion technology in the world. The characteristics of fusion neutron driver and the potential for transmutation of long-lived nuclear wastes and breeding of fissile nuclear fuel in a blanket are analyzed. A scenario of development steps is proposed.
文摘The change of electrical performances of silicon-germanium (SiGe)heterojunction bipolar transistor (HBT) and Si bipolar junction transistor (BJT) was studied as afunction of reactor fast neutron radiation fluence. Alter neutron irradiation, the collector currentI_c and the current gain beta decrease, and the base current I_b increases generally for SiGe HBT.The higher the neutron irradiation fluence is, the larger I_b increases. For conventional Si BJT,I_c and I_b increase as well as beta decreases much larger than SiGe HBT at the same fluence. It isshown that SiGe HBT has a larger anti-radiation threshold and better anti-radiation performance thanSi BJT. The mechanism of performance changes induced by irradiation was preliminarily discussed.
基金Project supported by the Foundation of State Key Laboratory of China(Grant Nos.SKLIPR1903Z,1803)the National Natural Science Foundation of China(Grant Nos.U2167208 and 11875223).
文摘Displacement damage effects on the charge-coupled device(CCD)induced by neutrons at the back-streaming white neutron source(Back-n)in the China Spallation Neutron Source(CSNS)are analyzed according to an online irradiation experiment.The hot pixels,random telegraph signal(RTS),mean dark signal,dark current and dark signal non-uniformity(DSNU)induced by Back-n are presented.The dark current is calculated according to the mean dark signal at various integration times.The single-particle displacement damage and transient response are also observed based on the online measurement data.The trends of hot pixels,mean dark signal,DSNU and RTS degradation are related to the integration time and irradiation fluence.The mean dark signal,dark current and DSNU2 are nearly linear with neutron irradiation fluence when nearly all the pixels do not reach saturation.In addition,the mechanisms of the displacement damage effects on the CCD are demonstrated by combining the experimental results and technology computer-aided design(TCAD)simulation.Radiation-induced traps in the space charge region of the CCD will act as generation/recombination centers of electron-hole pairs,leading to an increase in the dark signal.
文摘China plans to build an experimental fast neutron breeding reactor by 2000 to lay a solid technological foundation for the construction of commercial fast neutron reactors. The preliminary designs for the facility are expected to be completed by the end of this year. The facility, to be owned by the Chinese Academy of Nuclear Energy, will have a designed thermal power of 65 MW and an electricity generating output of 20 MW. Development of fast neutron reactors
文摘中子散射技术利用中子不带电、穿透力极强、能直接鉴别核素、较之 X 射线对轻元素灵敏、具有磁矩和粒子、波动二重性等特点,使之成为一种独特的、从原子和分子尺度上研究各种物质结构和微观世界运动规律的高新技术。中国先进研究堆 (CARR)上的中子散射工程将充分利用中国先进研究堆为中子散射工程提供的高通量、具有冷中子源、切向水平孔道等有利条件,建造三台新谱仪,更新原有的五台谱仪,瞄准世界先进水平,建立起研究手段基本配套、基本上覆盖中子散射研究的主要领域、强调应用又具备必要的基础研究能力的中子散射设备,为生命科学、材料科学、物理、化学、地矿、环境等各种学科及工程技术方面的研究,为国防工业和国民经济的应用提供先进的中子散射技术。其最终目标是建立起符合我国国情、其综合研究能力与世界先进水平接轨的中子散射国家重点实验室,使之成为我国二十一世纪中子散射研究和应用的中心及人才培养基地。