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Application of dense plasma focus devices and lasers in the radiation material sciences for the goals of inertial fusion beyond ignition 被引量:1
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作者 V.A.Gribkov I.V.Borovitskaya +7 位作者 E.V.Demina E.E.Kazilin S.V.Latyshev S.A.Maslyaev V.N.Pimenov T.Laas M.Paduch S.V.Rogozhkin 《Matter and Radiation at Extremes》 SCIE CAS 2020年第4期78-96,共19页
Specimens of materials for prospective use in chambers of nuclear fusion reactors with inertial plasma confinement,namely,W,ODS steels,Eurofer 97 steel,a number of ceramics,etc.,have been irradiated by dense plasma fo... Specimens of materials for prospective use in chambers of nuclear fusion reactors with inertial plasma confinement,namely,W,ODS steels,Eurofer 97 steel,a number of ceramics,etc.,have been irradiated by dense plasma focus devices and a laser in the Q-switchedmode of operation with a wide range of parameters,including some that noticeably exceeded those expected in reactors.By means of 1-ns laser interferometry and neutron measurements,the characteristics of plasma streams and fast ion beams,as well as the dynamics of their interaction with solid-state targets,have been investigated.3D profilometry,optical and scanning electron microscopy,atomic emission spectroscopy,X-ray elemental and structural analyses,and precise weighing of specimens before and after irradiation have provided data on the roughening threshold and the susceptibility to damage of the materials under investigation.Analysis of the results,together with numerical modeling,has revealed the important role of shock waves in the damage processes.It has been shown that a so-called integral damage factor may be used only within restricted ranges of the irradiation parameters.It has also been found that in the irradiation regime with well-developed gasdynamic motion of secondary plasma,the overall amount of radiation energy is spent preferentially either on removing large masses of cool matter from the material surface or on heating a small amount of plasma to high temperature(and,consequently,imparting to it a high velocity),depending on the power flux density and characteristics of the pulsed irradiation. 展开更多
关键词 removing PRECISE DAMAGE
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J/ψJ/ψ束缚态的存在合理吗?
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作者 董相坤 Vadim Baru +3 位作者 郭奉坤 Christoph Hanhart Alexey Nefediev 邹冰松 《Science Bulletin》 SCIE EI CSCD 2021年第24期2462-2470,M0003,共10页
得益于世界各大高能物理实验在强子谱研究中的进展,奇特强子态的研究是近20年来强子物理领域的热点.区别于传统夸克模型中三夸克构成的重子和正反夸克对构成的介子,奇特强子态包括由更多夸克构成的多夸克态、夸克胶子构成的混杂态、完... 得益于世界各大高能物理实验在强子谱研究中的进展,奇特强子态的研究是近20年来强子物理领域的热点.区别于传统夸克模型中三夸克构成的重子和正反夸克对构成的介子,奇特强子态包括由更多夸克构成的多夸克态、夸克胶子构成的混杂态、完全由胶子构成的胶球等.2020年,LHCb合作组公布了质子质子对撞中产生的J/ψJ/ψ不变质量分布,宣布测到了由4个粲夸克cccc构成的粒子X(6900).在随后的一项研究工作中,本文作者通过拟合实验数据发现了J/ψJ/ψ阈值附近存在一个分子态的迹象.这个态的存在最近也被另一课题组证实.那么这个J/ψJ/ψ分子态是由什么束缚在一起的呢?对低能强相互作用已有的认知能够解释它吗?本文作者研究了J/ψJ/ψ之间交换软胶子的相互作用,其长程部分可以由双π介子和双K介子交换来描述.他们发现,在合理的参数范围之间,这种介子交换的相互作用可以为J/ψJ/ψ形成束缚态提供很大一部分束缚力.这意味着J/ψJ/ψ之间的相互作用可能已经强到足以形成束缚态,而不像大家之前认为的那样小.这个J/ψJ/ψ分子态可以在今后的实验中进行寻找.如果得到证实,那么可以预期现实中会存在一系列类似的分子态,比如ηcηc以及对应的全底四夸克态. 展开更多
关键词 高能物理实验 束缚态 强相互作用 夸克模型 反夸克 Π介子 强子 多夸克态
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