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Sonoluminescence as the PeTa Radiation, Part Three 被引量:1
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作者 Vitali A. Tatartchenko 《Optics and Photonics Journal》 2018年第6期187-200,共14页
This paper is the third in a series published in this journal during 2017-2018. These three papers present various stages in the development of the PeTa model for phenomena of the same physical nature: cavitational lu... This paper is the third in a series published in this journal during 2017-2018. These three papers present various stages in the development of the PeTa model for phenomena of the same physical nature: cavitational luminescence (CL), multi-bubble sonoluminescence (MBSL), single-bubble sonoluminescence (SBSL), and laser-induced bubble luminescence (LIBL). The basis of this model is the PeTa (Perel’man-Tatartchenko) effect—a nonequilibrium characteristic radiation under first-order phase transitions, for instance, vapour condensation. The third iteration of this model “Vapour bubble luminescence” (VBL) is presented in this paper. The essence of this model is as follows: with a local decrease of pressure or an increase of temperature in a tiny volume of the liquid, one or several bubbles filled with vapour will appear. Subsequently, a very rapid increase in pressure or a decrease in temperature of the bubble leads to super-saturation of the vapour inside the bubble, followed by its instantaneous condensation with the emission of condensation energy (this is the PeTa effect). A sharp decrease in pressure causes the collapse of the bubble accompanied by a shock wave in the liquid. VBL model is conveniently represented on the solid-liquid-vapour phase diagram. A better understanding of the physical nature of the phenomena under consideration could help to find their useful applications. To develop this idea further, we propose a design of a cavity-free pulsed laser on the basis of CL/MBSL/SBSL. An analysis of LIBL in cryogenic liquids is also given in this paper. 展开更多
关键词 Cavitational LUMINESCENCE (CL) sonoluminescence (SL) Multi-Bubble sonoluminescence (MBSL) single-bubble sonoluminescence (sbsl) Laser-Induced BUBBLE LUMINESCENCE (LIBL) LIBL in Cryogenic Liquids VAPOUR BUBBLE LUMINESCENCE (VBL) PeTa (Perel’man-Tatartchenko) Effect FIRST-ORDER Phase Transitions Evaporation Condensation Crystallization Cavity-Free Pulsed Laser
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不同温度下的频率失谐对单泡声致发光影响的实验观察 被引量:3
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作者 申建华 陈伟中 卢美军 《南京大学学报(自然科学版)》 CAS CSCD 北大核心 2003年第4期540-546,共7页
报道了驱动频率和谐振器本征频率不匹配对单泡声致发光强度的影响。实验结果表明:系统在一定的频率失谐范围内都可以实现单泡声致发光,但在不同的频率驱动下,有着不同的发光强度,并存在一个最佳频率,在该频率驱动下的发光强度达到最强... 报道了驱动频率和谐振器本征频率不匹配对单泡声致发光强度的影响。实验结果表明:系统在一定的频率失谐范围内都可以实现单泡声致发光,但在不同的频率驱动下,有着不同的发光强度,并存在一个最佳频率,在该频率驱动下的发光强度达到最强。还对这种频率相关性在不同温度下的表现进行了研究,结果表明随着温度的上升,可发光的上限、下限和最佳频率升高,可发光频率宽度变宽。这些频率的随温度升高而升高,在理论上可以从声速与温度的关系上进行解释。同时,也测定了可发光的频率-声压参数域,以及它随温度的变化关系。 展开更多
关键词 频率失谐 单泡声致发光 驱动频率 本征频率 发光强度 频率宽度 最佳频率 温度
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