Fazal Badshah
Huazhong University of Science and Technology
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Publication
Featured researches published by Fazal Badshah.
EPL | 2017
Abdul Basit; Fazal Badshah; Hamad Ali; Guo-Qin Ge
Protection of the quantum coherence and discord in realistic quantum systems interacting with the environment of depolarizing noise is an important subject in quantum information processing. Weak measurement and measurement reversal can effectively suppress the amplitude damping-class decoherence. In this paper, we examine the effect of this protocol in the protection of quantum coherence and discord subjected to depolarizing noise environments. Our scheme consists of a prior weak measurement on each qubit before interacting with noisy channels followed by post measurement reversal. It is found that quantum coherence and discord can be enhanced to an optimal value by performing weak measurements and adjusting measurement parameters on each qubit. In addition, the maximal value of the quantum coherence and discord is found to be independent of the initial-state parameters.
Communications in Theoretical Physics | 2017
Abdul Basit; Hamad Ali; Fazal Badshah; Guo-Qin Ge
We investigate the time evolution of quantum correlations of a hybrid qubit-qutrit system under the classical Ornstein-Uhlenbeck (OU) noise. Here we consider two different one-parameter families of qubit-qutrit states which independently interact with the non-Markovian reservoirs. A comparison with the Markovian dynamics reveals that for the same set of initial condition parameters, the non-Markovian behavior of the environment plays an important role in the enhancement of the survival time of quantum correlations. In addition, it is observed that the non-Markovian strength has a positive impact on the correlations time. For the initial separable states it is found that there is a finite time interval in which the geometric quantum discord is frozen despite the presence of a noisy environment and that interval can be further prolonged by using the non-Markovian property. Moreover, its decay can be significantly delayed.
Scientific Reports | 2018
Fazal Badshah; Guo-Qin Ge; Muhammad Irfan; Sajid Qamar; Shahid Qamar
We study the resonant tunneling of ultraslow atoms through a system of high quality microwave cavities. We find that the phase tunneling time across the two coupled cavities exhibits more frequent resonances as compared to the single cavity interaction. The increased resonances are instrumental in the display of an alternate sub and superclassical character of the tunneling time along the momentum axis with increasing energies of the incident slow atoms. Here, the intercavity separation appears as an additional controlling parameter of the system that provides an efficient control of the superclassical behavior of the phase tunneling time. Further, we find that the phase time characteristics through two cavity system has the combined features of the tunneling through a double barrier and a double well arrangements.
EPL | 2018
Rafi Ud Din; Fazal Badshah; Iftikhar Ahmad; Guo-Qin Ge
Surface plasmon polaritons (SPPs) at the interfaces of composite media have some important properties not found in conventional SPPs, i.e. , SPPs at metal-dielectric interfaces. We present a useful scheme to control basic features of SPPs at the interface between a tripod-type atomic system and a silver-silica (AgSiO2 ) composite film. There is some interaction between the SPPs at the interface and localized surface plasmons (LSPs) due to Ag-nanoparticles in the composite. We show that the SPPs dispersive properties are strongly dependent on the coherent driving fields applied in the atomic system. Similarly, the filling ratio of the nanoparticles in the composite and the incident wavelength also affect different features of the SPPs. Our model provides more degrees of freedom for tuning the fundamental properties of SPPs at the interfaces associated with composite media.
Journal of The Optical Society of America B-optical Physics | 2018
Qing He; Fazal Badshah; Rafi Ud Din; Haiyang Zhang; Yong Hu; Guo-Qin Ge
Laser Physics Letters | 2017
Fazal Badshah; Abdul Basit; Hamad Ali; Guo-Qin Ge
Physica E-low-dimensional Systems & Nanostructures | 2018
Hamad Ali; Abdul Basit; Fazal Badshah; Guo-Qin Ge
Laser Physics Letters | 2018
Haiyang Zhang; Fazal Badshah; Abdul Basit; Guo-Qin Ge
Laser Physics Letters | 2018
Abdul W. Basit; Hamad Ali; Fazal Badshah; Haiyang Zhang; Rafi Ud Din; Guo-Qin Ge
Journal of The Optical Society of America B-optical Physics | 2018
Qing He; Fazal Badshah; Rafi Ud Din; Haiyang Zhang; Yong Hu; Guo-Qin Ge