vix.ing · top · new · best · stats · spec

Weaving Complex Graph on simple low-dimensional qubit lattices

2024/05/25 by Yu–Hang Dang, Shyam Dhamapurkar, Dang, Yu-Hang +8 · 1 citation
Computer Science · #Advanced Graph Theory Research

paper · pdf · doi:10.48550/arxiv.2405.16067

Abstract

In quantum computing, the connectivity of qubits placed on two-dimensional chips limits the scalability and functionality of solid-state quantum computers. This paper presents two approaches to constructing complex quantum networks from simple qubit arrays, specifically grid lattices. The first approach utilizes a subset of qubits as tunable couplers, effectively yielding a range of non-trivial graph-based Hamiltonians. The second approach employs dynamic graph engineering by periodically activating and deactivating couplers, enabling the creation of effective quantum walks with longer-range couplings. Numerical simulations verify the effective dynamics of these approaches. In terms of these two approaches, we explore implementing various graphs, including cubes and fullerenes, etc, on two-dimensional lattices. These techniques facilitate the realization of analog quantum simulation, particularly continuous-time quantum walks discussed in detail in this manuscript, for different computational tasks on superconducting quantum chips despite their inherent low dimensional simple architecture.

Cited by

Related