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A tensor network view of multilayer multiconfiguration time-dependent Hartree methods

Henrik R. Larsson

2024Molecular Physics36 citationsDOIOpen Access PDF

Abstract

The multilayer multiconfiguration time-dependent Hartree (ML-MCTDH) method and the density matrix renormalisation group (DMRG) are powerful workhorses applied mostly in different scientific fields. Although both methods are based on tensor network states, very different mathematical languages are used for describing them. This severely limits knowledge transfer and sometimes leads to re-inventions of ideas well known in the other field. Here, we review ML-MCTDH and DMRG theory using both MCTDH expressions and tensor network diagrams. We derive the ML-MCTDH equations of motions using diagrams and compare them with time-dependent and time-independent DMRG algorithms. We further review two selected recent advancements. The first advancement is related to optimising unoccupied single-particle functions in MCTDH, which corresponds to subspace enrichment in the DMRG. The second advancement is related to finding optimal tree structures and on highlighting similarities and differences of tensor networks used in MCTDH and DMRG theories. We hope that this contribution will foster more fruitful cross-fertilisation of ideas between ML-MCTDH and DMRG.

Topics & Concepts

HartreeDensity matrix renormalization groupTensor (intrinsic definition)Statistical physicsSubspace topologyPhysicsQuantum mechanicsComputer scienceMathematicsQuantumArtificial intelligencePure mathematicsTensor decomposition and applicationsQuantum many-body systemsAdvanced NMR Techniques and Applications