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20012005
most citedWave functions and characteristic times for transmission and reflection

3 citations · 7 across the 6 of their papers we have counts for

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quant-ph20051 cited

Larmor times for transmission and reflection

N. L. Chuprikov

On the basis of quant-ph/0405028 we define the Larmor times for transmission and reflection. These times are valid both for the stationary and time-dependent scattering processes,…

quant-ph20052 cited

Dwell times for transmission and reflection

N. L. Chuprikov

As was shown in quant-ph/0405028, the state of a tunneling particle can be uniquely presented as a coherent superposition of two states to describe alternative sub-processes, trans…

quant-ph2005

A comparative analysis of tunneling time concepts: Where do transmitted particles start from, on the average?

N. L. Chuprikov

In this paper we compare the concept of the tunneling time introduced in quant-ph/0405028 with those of the phase and dwell times. As is shown, unlike the latter our definition of…

quant-ph20043 cited

Wave functions and characteristic times for transmission and reflection

N. L. Chuprikov

We present a renewed wave-packet analysis based on the following ideas: if a quantum one-particle scattering process and the corresponding state are described by an indivisible wav…

quant-ph20031 cited

Wave functions and tunneling times for one-dimensional transmission and reflection

N. L. Chuprikov

It is shown that in the case of the one-particle one-dimensional scattering problem for a given time-independent potential, for each state of the whole quantum ensemble of identica…

quant-ph2003

Asymptotes and characteristic times for transmission and reflection

N. L. Chuprikov

A complete one-dimensional scattering of a spinless particle on a time-independent potential barrier is considered. To describe separately transmitted and reflected particles in th…