Single-Qubit Gates Matter for Optimising Quantum Circuit Depth in Qubit Mapping

08/01/2023
by   Sanjiang Li, et al.
0

Quantum circuit transformation (QCT, a.k.a. qubit mapping) is a critical step in quantum circuit compilation. Typically, QCT is achieved by finding an appropriate initial mapping and using SWAP gates to route the qubits such that all connectivity constraints are satisfied. The objective of QCT can be to minimise circuit size or depth. Most existing QCT algorithms prioritise minimising circuit size, potentially overlooking the impact of single-qubit gates on circuit depth. In this paper, we first point out that a single SWAP gate insertion can double the circuit depth, and then propose a simple and effective method that takes into account the impact of single-qubit gates on circuit depth. Our method can be combined with many existing QCT algorithms to optimise circuit depth. The Qiskit SABRE algorithm has been widely accepted as the state-of-the-art algorithm for optimising both circuit size and depth. We demonstrate the effectiveness of our method by embedding it in SABRE, showing that it can reduce circuit depth by up to 50 instance, Google Sycamore and 117 real quantum circuits from MQTBench.

READ FULL TEXT

page 1

page 2

page 3

page 4

research
07/05/2019

Optimization of Quantum Circuit Mapping using Gate Transformation and Commutation

This paper addresses quantum circuit mapping for Noisy Intermediate-Scal...
research
09/09/2021

Optimal Mapping for Near-Term Quantum Architectures based on Rydberg Atoms

Quantum algorithms promise quadratic or exponential speedups for applica...
research
07/18/2022

The Complexity of Quantum Circuit Mapping with Fixed Parameters

A quantum circuit must be preprocessed before implementing on NISQ devic...
research
08/21/2022

An Implementation of the Quantum Verification of Matrix Products Algorithm

We present a space-efficient implementation of the quantum verification ...
research
06/30/2022

Multivariate trace estimation in constant quantum depth

There is a folkloric belief that a depth-Θ(m) quantum circuit is needed ...
research
06/06/2020

Lowering the T-depth of Quantum Circuits By Reducing the Multiplicative Depth Of Logic Networks

The multiplicative depth of a logic network over the gate basis {, ⊕, } ...
research
10/08/2021

Quantum pixel representations and compression for N-dimensional images

We introduce a novel and uniform framework for quantum pixel representat...

Please sign up or login with your details

Forgot password? Click here to reset