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Seeking a quantum advantage with trapped-ion quantum simulations of condensed-phase chemical dynamics.

Publication ,  Journal Article
Kang, M; Nuomin, H; Chowdhury, SN; Yuly, JL; Sun, K; Whitlow, J; Valdiviezo, J; Zhang, Z; Zhang, P; Beratan, DN; Brown, KR
Published in: Nature reviews. Chemistry
May 2024

Simulating the quantum dynamics of molecules in the condensed phase represents a longstanding challenge in chemistry. Trapped-ion quantum systems may serve as a platform for the analog-quantum simulation of chemical dynamics that is beyond the reach of current classical-digital simulation. To identify a 'quantum advantage' for these simulations, performance analysis of both analog-quantum simulation on noisy hardware and classical-digital algorithms is needed. In this Review, we make a comparison between a noisy analog trapped-ion simulator and a few choice classical-digital methods on simulating the dynamics of a model molecular Hamiltonian with linear vibronic coupling. We describe several simple Hamiltonians that are commonly used to model molecular systems, which can be simulated with existing or emerging trapped-ion hardware. These Hamiltonians may serve as stepping stones towards the use of trapped-ion simulators for systems beyond the reach of classical-digital methods. Finally, we identify dynamical regimes in which classical-digital simulations seem to have the weakest performance with respect to analog-quantum simulations. These regimes may provide the lowest hanging fruit to make the most of potential quantum advantages.

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Published In

Nature reviews. Chemistry

DOI

EISSN

2397-3358

ISSN

2397-3358

Publication Date

May 2024

Volume

8

Issue

5

Start / End Page

340 / 358

Related Subject Headings

  • 34 Chemical sciences
 

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Kang, M., Nuomin, H., Chowdhury, S. N., Yuly, J. L., Sun, K., Whitlow, J., … Brown, K. R. (2024). Seeking a quantum advantage with trapped-ion quantum simulations of condensed-phase chemical dynamics. Nature Reviews. Chemistry, 8(5), 340–358. https://doi.org/10.1038/s41570-024-00595-1
Kang, Mingyu, Hanggai Nuomin, Sutirtha N. Chowdhury, Jonathon L. Yuly, Ke Sun, Jacob Whitlow, Jesús Valdiviezo, et al. “Seeking a quantum advantage with trapped-ion quantum simulations of condensed-phase chemical dynamics.Nature Reviews. Chemistry 8, no. 5 (May 2024): 340–58. https://doi.org/10.1038/s41570-024-00595-1.
Kang M, Nuomin H, Chowdhury SN, Yuly JL, Sun K, Whitlow J, et al. Seeking a quantum advantage with trapped-ion quantum simulations of condensed-phase chemical dynamics. Nature reviews Chemistry. 2024 May;8(5):340–58.
Kang, Mingyu, et al. “Seeking a quantum advantage with trapped-ion quantum simulations of condensed-phase chemical dynamics.Nature Reviews. Chemistry, vol. 8, no. 5, May 2024, pp. 340–58. Epmc, doi:10.1038/s41570-024-00595-1.
Kang M, Nuomin H, Chowdhury SN, Yuly JL, Sun K, Whitlow J, Valdiviezo J, Zhang Z, Zhang P, Beratan DN, Brown KR. Seeking a quantum advantage with trapped-ion quantum simulations of condensed-phase chemical dynamics. Nature reviews Chemistry. 2024 May;8(5):340–358.

Published In

Nature reviews. Chemistry

DOI

EISSN

2397-3358

ISSN

2397-3358

Publication Date

May 2024

Volume

8

Issue

5

Start / End Page

340 / 358

Related Subject Headings

  • 34 Chemical sciences