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脉冲强激光产生的激波在靶材中的传播过程
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作者 蔡宗良 张建泉 +1 位作者 刘峰 强希文 《计算物理》 CSCD 北大核心 1997年第4期426-428,共3页
采用一维流体动力学模型,以烧蚀压力作为已知的边界条件,分别以解析和数值计算方法,描述了短脉冲强激光辐照固态铝、铜和碳酚醛靶材时,烧蚀加载在靶材中产生的激波的增强、持续和衰减过程,给出了激波峰值压力和波形等特征参数的时... 采用一维流体动力学模型,以烧蚀压力作为已知的边界条件,分别以解析和数值计算方法,描述了短脉冲强激光辐照固态铝、铜和碳酚醛靶材时,烧蚀加载在靶材中产生的激波的增强、持续和衰减过程,给出了激波峰值压力和波形等特征参数的时空关系。 展开更多
关键词 强激光效应 烧蚀加载 靶材 微波传播特性
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Non-integer Quantum Transition, a True Non-perturbation Effect in Laser-Atom Interaction 被引量:1
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作者 ZHANG Qi-Ren 《Communications in Theoretical Physics》 SCIE CAS CSCD 2007年第6期1017-1023,共7页
We show that in the quantum transition of an atom interacting with an intense laser of circular frequency ω, the energy difference between the initial and the final states of the atom is not necessarily an integer mu... We show that in the quantum transition of an atom interacting with an intense laser of circular frequency ω, the energy difference between the initial and the final states of the atom is not necessarily an integer multiple of the quantum energy hω. This kind of non-integer transition is a true non-perturbation effect in laser-atom interaction. 展开更多
关键词 transitions induced by intense lasers non-perturbation effect violation of Bohr condition
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Gravitational Faraday effect in curved space-time induced by high-power lasers
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作者 周华 季沛勇 《Journal of Shanghai University(English Edition)》 CAS 2006年第2期111-114,共4页
Gravitational field produced by high-power laser is calculated according to the linearized Einstein field equation in weak field approximation. Gravitational Faraday effect of electromagnetic wave propagating in the a... Gravitational field produced by high-power laser is calculated according to the linearized Einstein field equation in weak field approximation. Gravitational Faraday effect of electromagnetic wave propagating in the above gravitational field is studied and the rotation angle of polarization plane of electromagnetic wave is derived. The result is discussed and estimated under the condition of present experiment facility. 展开更多
关键词 curved space-time Faraday effect.
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The green-emitting fluorescence of nano Y_2O_3:Er^(3+) under different excitations 被引量:3
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作者 JI RuoNan YE YanXi +5 位作者 HU XiaoYun FAN Jun LIU EnZhou ZHANG Qian ZHAO ChaoShuai YE SiWen 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2012年第7期1152-1157,共6页
The green-emitting fluorescent powders of nano Y2O3:Er^3+ were fabricated by the coprecipitation method. The X-ray diffrac- tion pattern shows that as-prepared Y2O3:Er^3+ is the cubic phase crystal with a grain si... The green-emitting fluorescent powders of nano Y2O3:Er^3+ were fabricated by the coprecipitation method. The X-ray diffrac- tion pattern shows that as-prepared Y2O3:Er^3+ is the cubic phase crystal with a grain size of about 30 nm. The UV-Vis spec- trum indicates Y^O3:Er^3+ exhibits five ultraviolet visible absorption peaks at 365, 377, 489, 521 and 652 nm respectively. Meanwhile, the fluorescence spectra of Y2O3:Er^3+ display four emission peaks at 522, 537, 550 and 562 nm at the excitation of 365,377 and 521 nm, respectively. The green-emitting fluorescent mechanism of Y2O3:Er^3+ is proposed as well. Additionally, the temperature dependence of fluorescence properties and metal Ag fluorescence enhancement effect are investigated. Results show that increasing the annealing temperature and metal Ag doping both can enhance the fluorescence intensity. The maxi- mum enhancement is 87.5% after Ag is doped. 展开更多
关键词 nano Y2O3:Er^3+ coprecipitation method luminous properties localized surface plasmon resonance fluorescence enhancement
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Laser-enhanced thermal effect of moderate intensity focused ultrasound on bio-tissues
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作者 JinYu Zhao ShuYi Zhang +1 位作者 XiuJi Shui Li Fan 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2017年第9期28-36,共9页
For avoiding extra-damage to healthy tissues surrounding the focal point during high intensity focused ultrasound(HIFU) treatment in medical therapy, to reduce the ultrasonic intensity outside the focal point is expec... For avoiding extra-damage to healthy tissues surrounding the focal point during high intensity focused ultrasound(HIFU) treatment in medical therapy, to reduce the ultrasonic intensity outside the focal point is expected. Thus, the heating processes induced by moderate intensity focused ultrasound(MIFU) and enhanced by combined irradiation of laser pulses for bio-tissues are studied in details. For fresh bio-tissues, the enhanced thermal effects by pulsed laser combined with MIFU irradiation are observed experimentally. To explore the mechanisms of these effects, several tissue-mimicking materials composed of agar mixed with graphite powders are prepared and studied for comparison, but the laser-enhanced thermal effects in these mimicking materials are much less than that in the fresh bio-tissues. Therefore, it is suggested that the laser-enhanced thermal effects may be mainly attributed to bio-activities and related photo-bio-chemical effects of fresh tissues. 展开更多
关键词 bio-tissue focused ultrasound laser pulse irradiation thermal effect
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