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Saddles on the Potential Energy Landscape of a Lennard-Jones Liquid

机译:在Lennard-Jones液体的潜在能量景观上的马鞍

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By means of molecular dynamics simulations, we study the stationary points of the potential energy in a Lennard-Jones liquid, giving a purely geometric characterization of the energy landscape of the system. We find a linear relation between the degree of instability of the stationary points and their potential energy, and we locate the energy where the instability vanishes. This threshold energy marks the border between saddle-dominated and minima-dominated regions of the energy landscape. The temperature where the potential energy of the Stillinger-Weber minima becomes equal to the threshold energy turns out to be very close to the mode-coupling transition temperature T_c.
机译:通过分子动力学模拟,我们研究了Lennard-Jones液体中潜在能量的固定点,纯粹的几何表征系统的能量景观。我们在静止点的不稳定性和潜在能量之间找到了线性关系,我们找到了不稳定消失的能量。这种阈值能量标志着能量景观的马鞍主导和最小主导地区之间的边界。 STERERINGER-WEBER MINIMA的电位能量变得等于阈值能量的温度变为非常接近模式耦合转变温度T_C。

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