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首页> 外文期刊>Journal of Experimental and Theoretical Physics >Formation of correlated states and optimization of nuclear reactions for low-energy particles at nonresonant low-frequency modulation of a potential well
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Formation of correlated states and optimization of nuclear reactions for low-energy particles at nonresonant low-frequency modulation of a potential well

机译:势阱非共振低频调制下低能粒子的相关态形成和核反应优化

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A method for the formation of correlated coherent states of low-energy particles in a parabolic potential well owing to the full-scale low-frequency modulation omega(t) = omega(0)sin Omega t of the parameters of this well has been considered. It has been shown that such a modulation in the absence of a stochastic force acting on a particle results in the fast formation of correlated coherent states and in an increase in the correlation coefficient and transparency of the potential barrier to the limiting values |r(t)|(max) -> 1 and D -> 1. The presence of the stochastic force significantly affects the evolution of correlated coherent states, decreasing the rate of an increase in the correlation coefficient |r(t)|(max) (at Omega a parts per thousand currency sign 10(-4)omega(0)) and limiting it at the level |r(a)|(max) < 1 (at Omega = (0.001-0.1)omega(0)); |r(a)|(max) increases with a decrease in the frequency of modulation and decreases with an increase in the intensity of the stochastic force. It has been shown that, at a realistic relation between the parameters, low-frequency modulation can ensure such |r|(max) value that the transparency of the potential barrier for low-energy particles increases by a factor of 10(50)-10(100) or larger. The mechanism of the formation of correlated coherent states for charged particles in a gas or a low-pressure plasma placed in a low-frequency magnetic field has been considered. We have determined the relation between the magnetic field strength and modulation frequency, as well as the relation between the temperature and density of the gas (plasma), at which the method under consideration can be used to optimize nuclear reactions at low energies.
机译:已经考虑了由于抛物线势阱的满量程低频调制omega(t)= omega(0)sin Omega t而形成的抛物线势阱中低能粒子的相关相干态形成方法。已经表明,在没有随机力作用于粒子的情况下,这种调制会导致快速形成相关的相干态,并增加相关系数和势垒对极限值| r(t )|(max)-> 1和D->1。随机力的存在会显着影响相关相干态的发展,从而降低相关系数| r(t)|(max)的增加速率。欧米茄千分之一货币符号10(-4)omega(0))并将其限制在| r(a)|(max)<1(在Omega =(0.001-0.1)omega(0)处); | r(a)|(max)随着调制频率的降低而增加,并且随随机力强度的增加而降低。已经表明,在参数之间的实际关系下,低频调制可以确保| r |(max)值,以使低能粒子势垒的透明度增加10(50)-。 10(100)或更大。已经考虑了形成置于置于低频磁场中的气体或低压等离子体中的带电粒子的相关相干态的形成机理。我们已经确定了磁场强度与调制频率之间的关系,以及温度与气体(等离子体)密度之间的关系,在此关系下,可以使用所考虑的方法来优化低能量下的核反应。

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