Radiative Decay Rate and Branching Fractions of MgF

Fuente: arXiv
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Main Authors: Norrgard, Eric, Chamorro, Yuly, Cooksey, Catherine, Eckel, Stephen, Pilgram, Nickolas, Rodriguez, Kayla, Yoon, Howard, Pasteka, Lukas, Borschevsky, Anastasia
Format: Preprint
Published: 2023
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author Norrgard, Eric
Chamorro, Yuly
Cooksey, Catherine
Eckel, Stephen
Pilgram, Nickolas
Rodriguez, Kayla
Yoon, Howard
Pasteka, Lukas
Borschevsky, Anastasia
author_facet Norrgard, Eric
Chamorro, Yuly
Cooksey, Catherine
Eckel, Stephen
Pilgram, Nickolas
Rodriguez, Kayla
Yoon, Howard
Pasteka, Lukas
Borschevsky, Anastasia
contents We report measured and calculated values of radiative decay rates and vibrational branching fractions for the A$^2Π$ state of MgF. The decay rate measurements use time-correlated single photon counting with roughly 1% total uncertainty. Branching-fraction measurements are performed using two calibrated imaging systems to achieve few percent total uncertainty. We use the highly accurate multireference relativistic ab initio methods to calculate the Franck-Condon factors and transition dipole moments required to determine the decay rates and the branching fractions. The measurements provide a precision benchmark for testing the accuracy of the molecular structure calculations. The determination of the decay rate and vibrational branching fractions can be used to inform future optical cycling and laser cooling schemes for the MgF molecule.
format Preprint
id arxiv_https___arxiv_org_abs_2303_16276
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Radiative Decay Rate and Branching Fractions of MgF
Norrgard, Eric
Chamorro, Yuly
Cooksey, Catherine
Eckel, Stephen
Pilgram, Nickolas
Rodriguez, Kayla
Yoon, Howard
Pasteka, Lukas
Borschevsky, Anastasia
Atomic Physics
We report measured and calculated values of radiative decay rates and vibrational branching fractions for the A$^2Π$ state of MgF. The decay rate measurements use time-correlated single photon counting with roughly 1% total uncertainty. Branching-fraction measurements are performed using two calibrated imaging systems to achieve few percent total uncertainty. We use the highly accurate multireference relativistic ab initio methods to calculate the Franck-Condon factors and transition dipole moments required to determine the decay rates and the branching fractions. The measurements provide a precision benchmark for testing the accuracy of the molecular structure calculations. The determination of the decay rate and vibrational branching fractions can be used to inform future optical cycling and laser cooling schemes for the MgF molecule.
title Radiative Decay Rate and Branching Fractions of MgF
topic Atomic Physics
url https://arxiv.org/abs/2303.16276