arXiv Open Access 2024

Polaritonic Chemistry using the Density Matrix Renormalization Group Method

Mikuláš Matoušek Nam Vu Niranjan Govind Jonathan J. Foley Libor Veis
Lihat Sumber

Abstrak

The emerging field of polaritonic chemistry explores the behavior of molecules under strong coupling with cavity modes. Despite recent developments in ab initio polaritonic methods for simulating polaritonic chemistry under electronic strong coupling, their capabilities are limited, especially in cases where the molecule also features strong electronic correlation. To bridge this gap, we have developed a novel method for cavity QED calculations utilizing the Density Matrix Renormalization Group (DMRG) algorithm in conjunction with the Pauli-Fierz Hamiltonian. Our approach is applied to investigate the effect of the cavity on the S0 -S1 transition of n-oligoacenes, with n ranging from 2 to 5, encompassing 22 fully correlated π orbitals in the largest pentacene molecule. Our findings indicate that the influence of the cavity intensifies with larger acenes. Additionally, we demonstrate that, unlike the full determinantal representation, DMRG efficiently optimizes and eliminates excess photonic degrees of freedom, resulting in an asymptotically constant computational cost as the photonic basis increases.

Topik & Kata Kunci

Penulis (5)

M

Mikuláš Matoušek

N

Nam Vu

N

Niranjan Govind

J

Jonathan J. Foley

L

Libor Veis

Format Sitasi

Matoušek, M., Vu, N., Govind, N., Foley, J.J., Veis, L. (2024). Polaritonic Chemistry using the Density Matrix Renormalization Group Method. https://arxiv.org/abs/2407.01381

Akses Cepat

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Informasi Jurnal
Tahun Terbit
2024
Bahasa
en
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arXiv
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Open Access ✓