the quantum wavepacket spreads as it propagates through the potential barrier.
量子波包在通过势垒传播时会扩散。
wavepacket dispersion causes the particle to lose its localized structure over time.
波包色散导致粒子随时间失去其局域结构。
scientists observed the wavepacket collapse during the measurement process.
科学家在测量过程中观察到波包坍缩。
the electron wavepacket exhibits both particle and wave characteristics.
电子波包表现出粒子和波的双重特性。
wavepacket interference patterns reveal the probabilistic nature of quantum mechanics.
波包干涉图样揭示了量子力学的概率本质。
a gaussian wavepacket provides an ideal representation of a localized quantum particle.
高斯波包为局域量子粒子提供了理想的表示。
wavepacket dynamics are governed by the time-dependent schrödinger equation.
波包动力学由含时薛定谔方程支配。
the wavepacket propagation speed depends on the group velocity of the component waves.
波包传播速度取决于分量波的群速度。
initial wavepacket spreading occurs before any significant dispersion takes place.
初始波包扩散在任何显著色散发生之前出现。
the wavepacket theory successfully explains the behavior of quantum systems.
波包理论成功解释了量子系统的行为。
measuring the wavepacket function collapses the quantum state into a definite eigenstate.
测量波包函数将量子态坍缩为确定的本征态。
wavepacket spreading becomes significant at longer time scales.
波包扩散在更长的时间尺度上变得显著。
the quantum wavepacket spreads as it propagates through the potential barrier.
量子波包在通过势垒传播时会扩散。
wavepacket dispersion causes the particle to lose its localized structure over time.
波包色散导致粒子随时间失去其局域结构。
scientists observed the wavepacket collapse during the measurement process.
科学家在测量过程中观察到波包坍缩。
the electron wavepacket exhibits both particle and wave characteristics.
电子波包表现出粒子和波的双重特性。
wavepacket interference patterns reveal the probabilistic nature of quantum mechanics.
波包干涉图样揭示了量子力学的概率本质。
a gaussian wavepacket provides an ideal representation of a localized quantum particle.
高斯波包为局域量子粒子提供了理想的表示。
wavepacket dynamics are governed by the time-dependent schrödinger equation.
波包动力学由含时薛定谔方程支配。
the wavepacket propagation speed depends on the group velocity of the component waves.
波包传播速度取决于分量波的群速度。
initial wavepacket spreading occurs before any significant dispersion takes place.
初始波包扩散在任何显著色散发生之前出现。
the wavepacket theory successfully explains the behavior of quantum systems.
波包理论成功解释了量子系统的行为。
measuring the wavepacket function collapses the quantum state into a definite eigenstate.
测量波包函数将量子态坍缩为确定的本征态。
wavepacket spreading becomes significant at longer time scales.
波包扩散在更长的时间尺度上变得显著。
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