首页> 外文期刊>The European physical journal, B. Condensed matter physics >The lifetime of the soliton in the improved Davydov model at the biological temperature 300 K for protein molecules
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The lifetime of the soliton in the improved Davydov model at the biological temperature 300 K for protein molecules

机译:蛋白质分子生物学温度300 K下改进的Davydov模型中孤子的寿命。

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We study the effects of quantum fluctuations and thermal perturbations on the lifetime of the soliton in the improved Davydov model proposed by us with two-quanta and with an added interaction. By using quantum perturbation theory, we compute the soliton lifetime for a wide ranges of parameter values relevant for protein molecules. The lifetime of the new soliton at the biological temperature 300 K is of the order of 10~(-10) second or τ/τ_0 ≥ 500 for parameters appropriate to α-helical protein molecules. This shows clearly that the new soliton in the improved model is a viable mechanism for the bio-energy transport in the α-helix region of proteins.
机译:在由我们提出的具有两个量子并且具有附加相互作用的改进的Davydov模型中,我们研究了量子涨落和热扰动对孤子寿命的影响。通过使用量子微扰理论,我们计算了与蛋白质分子相关的各种参数值的孤子寿命。对于适合于α-螺旋蛋白分子的参数,新孤子在生物温度300 K下的寿命约为10〜(-10)秒或τ/τ_0≥500。这清楚地表明,改进模型中的新孤子是蛋白质α-螺旋区中生物能量传输的可行机制。

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