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