activity
20162020
most citedQuantum walk transport on carbon nanotube structures

17 citations · 18 across the 2 of their papers we have counts for

collaborators

6 papers

quant-ph2020★ 1 cited

Relaxation to Equilibrium in a Quantum Network

Jaroslav Novotný, Angelo Mariano, Saverio Pascazio +2

The approach to equilibrium of quantum mechanical systems is a topic as old as quantum mechanics itself, but has recently seen a surge of interest due to applications in quantum te…

quant-ph2020★ 17 cited

Quantum walk transport on carbon nanotube structures

Jan Mareš, Jaroslav Novotný, Igor Jex

We study source-to-sink excitation transport on carbon nanotubes using the concept of quantum walks. In particular, we focus on transport properties of Grover coined quantum walks…

quant-ph2018

Percolated quantum walks with a general shift operator: From trapping to transport

Jan Mareš, Jaroslav Novotný, Igor Jex

We present a generalized definition of discrete-time quantum walks convenient for capturing a rather broad spectrum of walker's behavior on arbitrary graphs. It includes and covers…

quant-ph2017

Asymptotics of quantum Markov processes: From algebraic structure to characterization of asymptotic states

Jaroslav Novotný, Jirí Maryška, Igor Jex

Markov processes play an important role in physics and the theory of open systems in particular. In this paper we study the asymptotic evolution of trace-nonincreasing homogenous q…

quant-ph2016

Universality in random quantum networks

Jaroslav Novotný, Gernot Alber, Igor Jex

Networks constitute efficient tools for assessing universal features of complex systems. In physical contexts, classical as well as quantum, networks are used to describe a wide ra…

quant-ph2016

Quantum Walks with Dynamical Control: Graph Engineering, Initial State Preparation and State Transfer

Thomas Nitsche, Fabian Elster, Jaroslav Novotný +4

Quantum walks are a well-established model for the study of coherent transport phenomena and provide a universal platform in quantum information theory. Dynamically influencing the…