FUNDAMENTALS OF QUANTUM COMPUTING: A COMPREHENSIVE STUDY FROM SCHRÖDINGER WAVE EQUATION TO QUANTUM STATES

  • Unique Paper ID: 157125
  • PageNo: 76-87
  • Abstract:
  • The subject of quantum computing is a combination of classical information theory, computer science, and quantum physics. This paper aims to mathematically derive several potential Quantum States from Schrödinger Wave Equation and representation of these states in Bloch Sphere using corresponding Bloch Vector. The authors summarizes in this paper not just the core concepts of quantum computing like Superposition, Entanglement, and Decoherence, but also the need for Quantum Computers, and its applications in different fields

Copyright & License

Copyright © 2026 Authors retain the copyright of this article. This article is an open access article distributed under the Creative Commons Attribution License which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

BibTeX

@article{157125,
        author = {Asoke Nath and Dwaipayan Bhoumick},
        title = {FUNDAMENTALS OF QUANTUM COMPUTING: A COMPREHENSIVE STUDY FROM SCHRÖDINGER WAVE EQUATION TO QUANTUM STATES},
        journal = {International Journal of Innovative Research in Technology},
        year = {},
        volume = {9},
        number = {6},
        pages = {76-87},
        issn = {2349-6002},
        url = {https://ijirt.org/article?manuscript=157125},
        abstract = {The subject of quantum computing is a combination of classical information theory, computer science, and quantum physics. This paper aims to mathematically derive several potential Quantum States from Schrödinger Wave Equation and representation of these states in Bloch Sphere using corresponding Bloch Vector. The authors summarizes in this paper not just the core concepts of quantum computing like Superposition, Entanglement, and Decoherence, but also the need for Quantum Computers, and its applications in different fields},
        keywords = {Algorithm, Bloch Sphere, Bloch Vector, Bracket, Copenhagen Interpretation, Density Matrix, Dirac Notation, Eigenstates, Entanglement, Hilbert Space, Quantum Decoherence, Quantum Gates, Quantum Tunneling, Qubits, Superposition, Z-Measurement.},
        month = {},
        }

Cite This Article

Nath, A., & Bhoumick, D. (). FUNDAMENTALS OF QUANTUM COMPUTING: A COMPREHENSIVE STUDY FROM SCHRÖDINGER WAVE EQUATION TO QUANTUM STATES. International Journal of Innovative Research in Technology (IJIRT), 9(6), 76–87.

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