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

09/25/2018
by   Himanshu Thapliyal, et al.
0

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 be made fault-tolerant but the T gate is very costly to implement. The small number of qubits available in existing quantum computers adds another constraint on quantum circuits. As a result, reducing T-count and qubit cost have become important optimization goals. The design of quantum circuits for integer division has caught the attention of researchers and designs have been proposed in the literature. However, these designs suffer from excessive T gate and qubit costs. Many of these designs also produce significant garbage output resulting in additional qubit and T gate costs to eliminate these outputs. In this work, we propose two quantum integer division circuits. The first proposed quantum integer division circuit is based on the restoring division algorithm and the second proposed design implements the non-restoring division algorithm. Both proposed designs are optimized in terms of T-count, T-depth and qubits. Both proposed quantum circuit designs are based on (i) a quantum subtractor, (ii) a quantum adder-subtractor circuit, and (iii) a novel quantum conditional addition circuit. Our proposed restoring division circuit achieves average T-count savings from 79.03 % to 91.69 % compared to the existing works. Our proposed non-restoring division circuit achieves average T-count savings from 49.75 % to 90.37 % compared to the existing works. Further, both our proposed designs have linear T-depth.

READ FULL TEXT

page 1

page 2

page 3

page 4

research
12/21/2017

T-count and Qubit Optimized Quantum Circuit Design of the Non-Restoring Square Root Algorithm

Quantum circuits for basic mathematical functions such as the square roo...
research
05/23/2020

Optimized Quantum Circuit Partitioning

The main objective of this paper is to improve the communication costs i...
research
04/16/2022

Reducing the Depth of Quantum FLT-Based Inversion Circuit

Works on quantum computing and cryptanalysis has increased significantly...
research
12/11/2018

Multi-objective evolutionary algorithms for quantum circuit discovery

Quantum hardware continues to advance, yet finding new quantum algorithm...
research
12/07/2020

Quantum Circuit Design Search

This article explores search strategies for the design of parameterized ...
research
07/04/2018

Crosstalk based Fine-Grained Reconfiguration Techniques for Polymorphic Circuits

Truly polymorphic circuits, whose functionality/circuit behavior can be ...
research
09/24/2018

T-count Optimized Quantum Circuits for Bilinear Interpolation

Quantum circuits for basic image processing functions such as bilinear i...

Please sign up or login with your details

Forgot password? Click here to reset