CSWAP GATE BASED COMBINATIONAL CIRCUITS FOR SECURE COMMUNICATION
Abstract & Details
Research Area
Electronics and Communication Engineering
Keywords
QUANTUM COMPUTING
INTERFERENCE
SUPERPOSITION
QUANTUM ENTANGLEMENT
REVERSIBILITY
CSWAP GATE
MULTIPLEXER
DEMULTIPLEXER
DECODER
ANACONDA
JUPYTER NOTEBOOK
QISKIT
PYTHON CODING
Abstract
Quantum computing is an emerging technology in the present-day research and developments. It depends upon the basic physical phenomena like interference, superposition, entanglement etc. which promise an efficient solution to the complex mathematical problems that take years to solve. Reversibility is another feature in this, which allows to detect the input by observing the output. Quantum computing supports some sort of gates used to process the input data applied. Among these gates Hadamard gate is an important one that offers superposition of the input and defines all the possible inputs required to determine the output. This is a special feature which is required in the verification and testing of the VSLI designs under test. Further, these quantum gates can also be used to design arithmetic and logical circuits for the required applications and they promise higher speed. In this proposed work, Quantum gates have been defined as logic gates to design digital circuits. Also, a CSWAP gate has been used to propose the combinational circuits like Multiplexers, Demultiplexers and Decoders. These are very much helpful for the implementation of quantum entanglement to provide secure communication.
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Author Information
| # | Name | Institute / Affiliation |
|---|---|---|
| 1 | TALLAM JYOTHI SAI ABHIJITH | VASIREDDY VENKATADRI INSTITUTE OF TECHNOLOGY |
| 2 | RAVELA ANUDEEP | VASIREDDY VENKATADRI INSTITUTE OF TECHNOLOGY |
| 3 | YARLAGADDA MAHESH BABU | VASIREDDY VENKATADRI INSTITUTE OF TECHNOLOGY |
How to Cite
Use the following formats to cite this article in your research.
APA Style
ABHIJITH, TALLAM JYOTHI SAI, ANUDEEP, RAVELA, & BABU, YARLAGADDA MAHESH (2022). CSWAP GATE BASED COMBINATIONAL CIRCUITS FOR SECURE COMMUNICATION. International Journal of Advance Research and Innovative Ideas In Education, 8(3), 3376-3385.
MLA Style
ABHIJITH, TALLAM JYOTHI SAI, et al. "CSWAP GATE BASED COMBINATIONAL CIRCUITS FOR SECURE COMMUNICATION." International Journal of Advance Research and Innovative Ideas In Education, vol. 8, no. 3, 2022, pp. 3376-3385.
IEEE Style
TALLAM JYOTHI SAI ABHIJITH, RAVELA ANUDEEP, and YARLAGADDA MAHESH BABU, "CSWAP GATE BASED COMBINATIONAL CIRCUITS FOR SECURE COMMUNICATION," International Journal of Advance Research and Innovative Ideas In Education, vol. 8, no. 3, pp. 3376-3385, 2022.
Vancouver Style
ABHIJITH TALLAM JYOTHI SAI, ANUDEEP RAVELA, BABU YARLAGADDA MAHESH. CSWAP GATE BASED COMBINATIONAL CIRCUITS FOR SECURE COMMUNICATION. International Journal of Advance Research and Innovative Ideas In Education. 2022;8(3):3376-3385.
Harvard Style
ABHIJITH, TALLAM JYOTHI SAI, ANUDEEP, RAVELA, & BABU, YARLAGADDA MAHESH (2022) 'CSWAP GATE BASED COMBINATIONAL CIRCUITS FOR SECURE COMMUNICATION', International Journal of Advance Research and Innovative Ideas In Education, 8(3), pp. 3376-3385.
Chicago Style
ABHIJITH, TALLAM JYOTHI SAI, RAVELA ANUDEEP, and YARLAGADDA MAHESH BABU. "CSWAP GATE BASED COMBINATIONAL CIRCUITS FOR SECURE COMMUNICATION." International Journal of Advance Research and Innovative Ideas In Education 8, no. 3 (2022): 3376-3385.
Turabian Style
ABHIJITH, TALLAM JYOTHI SAI, RAVELA ANUDEEP, and YARLAGADDA MAHESH BABU. "CSWAP GATE BASED COMBINATIONAL CIRCUITS FOR SECURE COMMUNICATION." International Journal of Advance Research and Innovative Ideas In Education 8, no. 3 (2022): 3376-3385.
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