Manuscript Title:

SHARING OF INFORMATION USING BI-QUTRIT QUANTUM STATES BASED ON BIVARIATE QUANTUM GATES

Author:

HARDEEP, MANOJ KUMAR, R.K. MISHRA

DOI Number:

DOI:10.17605/OSF.IO/A49EJ

Published : 2021-12-25

About the author(s)

1. HARDEEP - Department of Mathematics and Statistics, Gurukula Kangri(Deemed to be University), Haridwar (UK), India.
2. MANOJ KUMAR - Department of Mathematics and Statistics, Gurukula Kangri(Deemed to be University), Haridwar (UK), India.
3. R.K. MISHRA - Department of Applied Science, G. L. Bajaj Institute of Technology and Management, Greater Noida (Uttar Pradesh), India.

Full Text : PDF

Abstract

It is well known that a qubit is a superposition of two orthogonal quantum states while, a qutrit is a superposition of three mutually orthogonal quantum states. It means qutrit is more advantageous than qubit, in carrying information via. quantum based devices. Beside it, higher dimensional quantum states offer many other benefits like increased security, large channel capacity for communication, more efficient quantum operations etc. More generally, qubits in higher dimensions provide intensive in sights in perspective of quantum correlations. Specifically, qutrits are of great importance in quantum information science. Qubits manipulation and controlling were demandable job at first but presently they are commonly used in quantum usage. Now a days it is become more enthralling to study qubit information in higher dimension Hilbert spaces, by raising number of qubits or by increasing the dimension of quantum systems. The present work proposes the sharing of information using bi-qutrit quantum states based on bivariate quantum gates.


Keywords

Quantum Cryptography, Threshold Quantum Secret Sharing, Lagrange Interpolation, Bivariate Operator.