activity
20112019
most citedComparison between Decoherence time for a Two-state Spin 1/2 System with Its Corresponding Quantum Retrieval Period

2 citations · 4 across the 3 of their papers we have counts for

collaborators

6 papers

quant-ph2019

Bringing Schrodinger's Cat to Life with Non-Equilibrium Respiration

Arash Tirandaz, Hamid Reza Naeij, Afshin Shafiee

In this study, we have proposed a method based on non-equilibrium effects to generate the superposition of macroscopically distinguishable quantum states, known as Schrodinger cat…

physics.chem-ph2017

Dissipative Vibrational Model for Chiral Recognition in Olfaction

Arash Tirandaz, Farhad Taher Ghahramani, Afshin Shafiee

We examine the olfactory discrimination of left- and right-handed enantiomers of chiral odorants based on the odorant-mediated electron transport from a donor to an acceptor of the…

quant-ph2017

Classicalization of Quantum State of Detector by Amplification Process

Arash Tirandaz, Farhad Taher Ghahramani, Ali Asadian +1

It has been shown that a macroscopic system being in a high-temperature thermal coherent state can be, in principle, driven into a non-classical state by coupling to a microscopic…

physics.chem-ph2017

Validity Examination of the Dissipative Quantum Model of Olfaction

Arash Tirandaz, Farhad Taher Ghahramani, Vahid Salari

The validity of the dissipative quantum model of olfaction has not been examined yet and therefore the model suffers from the lack of experimental support. Here, we generalize the…

quant-ph2017★ 2 cited

Perturbative Treatment of Quantum to Classical Transition in Chiral Molecules: Dilute Phase vs. Condensed Phase

Farhad Taher Ghahramani, Arash Tirandaz

We examine the dynamics of chiral states of chiral molecules with high tunneling rates in dilute and condensed phases in the context of time-dependent perturbation theory. The chir…

quant-ph2011★ 2 cited

Comparison between Decoherence time for a Two-state Spin 1/2 System with Its Corresponding Quantum Retrieval Period

Afshin Shafiee, Arash Tirandaz

We consider the evolution of a two-state quantum system (a spin 1/2 particle) in both the framework of standard quantum mechanics and under the decoherence regime. The former appro…