Media Summary: Yaroslav Herasymenko, Maarten Stroeks, Jonas Helsen and Barbara Terhal. Chris Cade, Marten Folkertsma, Sevag Gharibian, Ryu Hayakawa, Francois Le Gall, Tomoyuki Morimae and Jordi Weggemans. Abstract: We propose VQE circuit fabrics with advantageous properties for the simulation of strongly correlated ground and excited ...

Qip2023 Optimizing Sparse Fermionic Hamiltonians - Detailed Analysis & Overview

Yaroslav Herasymenko, Maarten Stroeks, Jonas Helsen and Barbara Terhal. Chris Cade, Marten Folkertsma, Sevag Gharibian, Ryu Hayakawa, Francois Le Gall, Tomoyuki Morimae and Jordi Weggemans. Abstract: We propose VQE circuit fabrics with advantageous properties for the simulation of strongly correlated ground and excited ...

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QIP2023 | Optimizing sparse fermionic Hamiltonians (Yaroslav Herasymenko)
QIP 2022 | Optimizing Strongly Interacting Fermionic Hamiltonians (Matthew Hastings)
QIP2023 | Improved Hardness Results for the Guided Local Hamiltonian Problem (Weggemans + Getachew)
STOC 2022 - Optimizing strongly interacting fermionic Hamiltonians
Local, expressive, Quantum-Number-Preserving Ansatze for fermionic systems, Rob Parrish, #QRST
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QIP2023 | Optimizing sparse fermionic Hamiltonians (Yaroslav Herasymenko)

QIP2023 | Optimizing sparse fermionic Hamiltonians (Yaroslav Herasymenko)

Yaroslav Herasymenko, Maarten Stroeks, Jonas Helsen and Barbara Terhal.

QIP 2022 | Optimizing Strongly Interacting Fermionic Hamiltonians (Matthew Hastings)

QIP 2022 | Optimizing Strongly Interacting Fermionic Hamiltonians (Matthew Hastings)

Title:

QIP2023 | Improved Hardness Results for the Guided Local Hamiltonian Problem (Weggemans + Getachew)

QIP2023 | Improved Hardness Results for the Guided Local Hamiltonian Problem (Weggemans + Getachew)

Chris Cade, Marten Folkertsma, Sevag Gharibian, Ryu Hayakawa, Francois Le Gall, Tomoyuki Morimae and Jordi Weggemans.

STOC 2022 - Optimizing strongly interacting fermionic Hamiltonians

STOC 2022 - Optimizing strongly interacting fermionic Hamiltonians

Optimizing

Local, expressive, Quantum-Number-Preserving Ansatze for fermionic systems, Rob Parrish, #QRST

Local, expressive, Quantum-Number-Preserving Ansatze for fermionic systems, Rob Parrish, #QRST

Abstract: We propose VQE circuit fabrics with advantageous properties for the simulation of strongly correlated ground and excited ...