Continuous thermochemical sources produce bright AlF molecular beams that can be cooled to low rotational temperatures and velocities using buffer gas, potentially aiding molecular trapping.
High-performance gpu-accelerated evaluation of electron repulsion integrals
4 Pith papers cite this work, alongside 10 external citations. Polarity classification is still indexing.
citation-role summary
citation-polarity summary
authors
verdicts
UNVERDICTED 4roles
background 3representative citing papers
KerneLDI accelerates exchange-correlation integration in Kohn-Sham DFT by up to 10x through block-structured matrix multiplication that exploits spatial locality on GPUs while preserving accuracy.
Molecules can form distinct equilibrium configurations called directomers under orienting electric fields by exploiting polarizability, leading to unique electronic and nuclear states in low-lying excited states.
A quantum algorithm for rovibrational Hamiltonian simulation on fault-tolerant quantum computers using hybrid DVR and Walsh-Hadamard QROM, claiming exponential resource savings over prior quantum and classical methods.
citing papers explorer
-
Continuous thermochemical sources of AlF molecules
Continuous thermochemical sources produce bright AlF molecular beams that can be cooled to low rotational temperatures and velocities using buffer gas, potentially aiding molecular trapping.
-
Accelerating Locality-Driven Integration in Quantum Chemistry with Block-Structured Matrix Multiplication
KerneLDI accelerates exchange-correlation integration in Kohn-Sham DFT by up to 10x through block-structured matrix multiplication that exploits spatial locality on GPUs while preserving accuracy.
-
On the existence of distinct equilibrium configurations under orienting external electric fields
Molecules can form distinct equilibrium configurations called directomers under orienting electric fields by exploiting polarizability, leading to unique electronic and nuclear states in low-lying excited states.
-
Simulating high-accuracy nuclear motion Hamiltonians using discrete variable representation and Walsh-Hadamard QROM on fault-tolerant quantum computers
A quantum algorithm for rovibrational Hamiltonian simulation on fault-tolerant quantum computers using hybrid DVR and Walsh-Hadamard QROM, claiming exponential resource savings over prior quantum and classical methods.