activity
20172021
most citedT-count Optimized Design of Quantum Integer Multiplication

11 citations · 19 across the 4 of their papers we have counts for

collaborators

7 papers

quant-ph20212 cited

Quantum Carry Lookahead Adders for NISQ and Quantum Image Processing

Himanshu Thapliyal, Edgard Muñoz-Coreas, Vladislav Khalus

Progress in quantum hardware design is progressing toward machines of sufficient size to begin realizing quantum algorithms in disciplines such as encryption and physics. Quantum c…

quant-ph20206 cited

T-count and Qubit Optimized Quantum Circuit Designs of Carry Lookahead Adder

Himanshu Thapliyal, Edgard Muñoz-Coreas, Vladislav Khalus

Quantum circuits of arithmetic operations such as addition are needed to implement quantum algorithms in hardware. Quantum circuits based on Clifford+T gates are used as they can b…

quant-ph2018

T-count Optimized Quantum Circuits for Bilinear Interpolation

Edgard Muñoz-Coreas, Himanshu Thapliyal

Quantum circuits for basic image processing functions such as bilinear interpolation are required to implement image processing algorithms on quantum computers. In this work, we pr…

quant-ph2018

Quantum Circuit Designs of Integer Division Optimizing T-count and T-depth

Himanshu Thapliyal, Edgard Muñoz-Coreas, T. S. S. Varun +1

Quantum circuits for mathematical functions such as division are necessary to use quantum computers for scientific computing. Quantum circuits based on Clifford+T gates can easily…

quant-ph2018

Quantum Computing Circuits and Devices

Travis S. Humble, Himanshu Thapliyal, Edgard Munoz-Coreas +2

The development of quantum computing technologies builds on the unique features of quantum physics while borrowing familiar principles from the design of conventional devices. We i…

quant-ph2017

Design of Quantum Circuits for Galois Field Squaring and Exponentiation

Edgard Muñoz-Coreas, Himanshu Thapliyal

This work presents an algorithm to generate depth, quantum gate and qubit optimized circuits for squaring in the polynomial basis. Further, to the best of our knowledge t…