3

[1902.10673] Improved Fault-Tolerant Quantum Simulation of Condensed-Phase Corre...

 3 years ago
source link: https://arxiv.org/abs/1902.10673
Go to the source link to view the article. You can view the picture content, updated content and better typesetting reading experience. If the link is broken, please click the button below to view the snapshot at that time.

[Submitted on 27 Feb 2019 (v1), last revised 13 Jul 2020 (this version, v4)]

Improved Fault-Tolerant Quantum Simulation of Condensed-Phase Correlated Electrons via Trotterization

Download PDF

Recent work has deployed linear combinations of unitaries techniques to reduce the cost of fault-tolerant quantum simulations of correlated electron models. Here, we show that one can sometimes improve upon those results with optimized implementations of Trotter-Suzuki-based product formulas. We show that low-order Trotter methods perform surprisingly well when used with phase estimation to compute relative precision quantities (e.g. energies per unit cell), as is often the goal for condensed-phase systems. In this context, simulations of the Hubbard and plane-wave electronic structure models with N < 10^5 fermionic modes can be performed with roughly O(1) and O(N^2) T complexities. We perform numerics revealing tradeoffs between the error and gate complexity of a Trotter step; e.g., we show that split-operator techniques have less Trotter error than popular alternatives. By compiling to surface code fault-tolerant gates and assuming error rates of one part per thousand, we show that one can error-correct quantum simulations of interesting, classically intractable instances with a few hundred thousand physical qubits.

Comments: 45 pages, 15 figures. Only difference from v3 is change to CC BY 4.0 license Subjects: Quantum Physics (quant-ph); Chemical Physics (physics.chem-ph) Journal reference: Quantum 4, 296 (2020) DOI: 10.22331/q-2020-07-16-296 Cite as: arXiv:1902.10673 [quant-ph]   (or arXiv:1902.10673v4 [quant-ph] for this version)

About Joyk


Aggregate valuable and interesting links.
Joyk means Joy of geeK