Molecules cooled below the Doppler limit S Truppe, HJ Williams, M Hambach, L Caldwell, NJ Fitch, EA Hinds, ... Nature Physics 13 (12), 1173-1176, 2017 | 380 | 2017 |
Laser cooled YbF molecules for measuring the electron’s electric dipole moment J Lim, JR Almond, MA Trigatzis, JA Devlin, NJ Fitch, BE Sauer, MR Tarbutt, ... Physical review letters 120 (12), 123201, 2018 | 223 | 2018 |
Magnetic trapping and coherent control of laser-cooled molecules HJ Williams, L Caldwell, NJ Fitch, S Truppe, J Rodewald, EA Hinds, ... Physical review letters 120 (16), 163201, 2018 | 129 | 2018 |
Large effects of electric fields on atom-molecule collisions at millikelvin temperatures LP Parazzoli, NJ Fitch, PS Żuchowski, JM Hutson, HJ Lewandowski Physical review letters 106 (19), 193201, 2011 | 100 | 2011 |
Laser-cooled molecules NJ Fitch, MR Tarbutt Advances in atomic, molecular, and optical Physics 70, 157-262, 2021 | 87 | 2021 |
Characteristics of a magneto-optical trap of molecules HJ Williams, S Truppe, M Hambach, L Caldwell, NJ Fitch, EA Hinds, ... New Journal of Physics 19 (11), 113035, 2017 | 86 | 2017 |
An intense, cold, velocity-controlled molecular beam by frequency-chirped laser slowing S Truppe, HJ Williams, NJ Fitch, M Hambach, TE Wall, EA Hinds, ... New Journal of Physics 19 (2), 022001, 2017 | 85 | 2017 |
Deep laser cooling and efficient magnetic compression of molecules L Caldwell, JA Devlin, HJ Williams, NJ Fitch, EA Hinds, BE Sauer, ... Physical review letters 123 (3), 033202, 2019 | 80 | 2019 |
Collisions between ultracold molecules and atoms in a magnetic trap S Jurgilas, A Chakraborty, CJH Rich, L Caldwell, HJ Williams, NJ Fitch, ... Physical Review Letters 126 (15), 153401, 2021 | 47 | 2021 |
Methods for measuring the electron’s electric dipole moment using ultracold YbF molecules NJ Fitch, J Lim, EA Hinds, BE Sauer, MR Tarbutt Quantum Science and Technology 6 (1), 014006, 2020 | 45 | 2020 |
Measuring the stability of fundamental constants with a network of clocks G Barontini, L Blackburn, V Boyer, F Butuc-Mayer, X Calmet, ... EPJ Quantum Technology 9 (1), 12, 2022 | 44 | 2022 |
Principles and design of a Zeeman–Sisyphus decelerator for molecular beams NJ Fitch, MR Tarbutt ChemPhysChem 17 (22), 3609-3623, 2016 | 42 | 2016 |
Long rotational coherence times of molecules in a magnetic trap L Caldwell, HJ Williams, NJ Fitch, J Aldegunde, JM Hutson, BE Sauer, ... Physical Review Letters 124 (6), 063001, 2020 | 36 | 2020 |
New techniques for a measurement of the electron’s electric dipole moment CJ Ho, JA Devlin, IM Rabey, P Yzombard, J Lim, SC Wright, NJ Fitch, ... New Journal of Physics 22 (5), 053031, 2020 | 33 | 2020 |
High-energy-resolution molecular beams for cold collision studies LP Parazzoli, N Fitch, DS Lobser, HJ Lewandowski New Journal of Physics 11 (5), 055031, 2009 | 31 | 2009 |
Experimental demonstration of classical Hamiltonian monodromy in the 1: 1: 2 resonant elastic pendulum NJ Fitch, CA Weidner, LP Parazzoli, HR Dullin, HJ Lewandowski arXiv preprint arXiv:0906.2941, 2009 | 29 | 2009 |
Method for traveling-wave deceleration of buffer-gas beams of CH MI Fabrikant, T Li, NJ Fitch, N Farrow, JD Weinstein, HJ Lewandowski Physical Review A 90 (3), 033418, 2014 | 27 | 2014 |
An ultracold molecular beam for testing fundamental physics X Alauze, J Lim, MA Trigatzis, S Swarbrick, FJ Collings, NJ Fitch, ... Quantum Science and Technology 6 (4), 044005, 2021 | 25 | 2021 |
State purity of decelerated molecular beams NJ Fitch, DA Esteves, MI Fabrikant, TC Briles, Y Shyur, LP Parazzoli, ... Journal of Molecular Spectroscopy 278, 1-6, 2012 | 20 | 2012 |
Advances In Atomic, Molecular, and Optical Physics N Fitch, M Tarbutt Academic Press 70, 157-262, 2021 | 15 | 2021 |