Staff profile
Overview
https://internal.durham.ac.uk/images/profiles/17112/msps75.jpg

Affiliation | Room number | Telephone |
---|---|---|
Marie Curie Fellowship in the Department of Physics | PH138 | |
Member of Quantum Light and Matter |
Research groups
- Quantum Light and Matter
Publications
Journal Article
- Gregory, P., Blackmore, J., Frye, M., Fernley, L., Bromley, S., Hutson, J.M. & Cornish, S.L. (2021). Molecule-molecule and atom-molecule collisions with ultracold RbCs molecules. New Journal of Physics 23: 125004.
- Ratkata, A., Gregory, P.D., Innes, A.D., Matthies, J.A., McArd, L.A., Mortlock, J.M., Safronova, M.S., Bromley, S.L. & Cornish, S.L. (2021). Measurement of the tune-out wavelength for 133Cs at 880nm. Physical Review A 104(5): 052813.
- Gregory, P.D., Blackmore, J.A., Bromley, S.L., Hutson, J.M. & Cornish, S.L. (2021). Robust storage qubits in ultracold polar molecules. Nature Physics 17(10): 1149-1153.
- Beloy, K., Bodine, M. I., Bothwell, T., Brewer, S. M., Bromley S. L. & et al. (2021). Frequency ratio measurements at 18-digit accuracy using an optical clock network. Nature 591(7851): 564-569.
- Blackmore, J.A., Sawant, R., Gregory, P.D., Bromley, S.L., Aldegunde, J., Hutson, J.M. & Cornish, S.L. (2020). Controlling the ac Stark effect of RbCs with dc electric and magnetic fields. Physical Review A 102(5): 053316.
- Blackmore, J.A., Gregory, P.D., Bromley, S.L. & Cornish, S.L. (2020). Coherent Manipulation of the Internal State of Ultracold 87Rb133Cs Molecules with Multiple Microwave Fields. Physical Chemistry Chemical Physics 47(22): 27529-27538.
- Bodine, Martha I., Deschênes, Jean-Daniel, Khader, Isaac H., Swann, William C., Leopardi, Holly, Beloy, Kyle, Bothwell, Tobias, Brewer, Samuel M., Bromley, Sarah L., Chen, Jwo-Sy, Diddams, Scott A., Fasano, Robert J., Fortier, Tara M., Hassan, Youssef S., Hume, David B., Kedar, Dhruv, Kennedy, Colin J., Koepke, Amanda, Leibrandt, David R., Ludlow, Andrew D., McGrew, William F., Milner, William R., Nicolodi, Daniele, Oelker, Eric, Parker, Thomas E., Robinson, John M., Romish, Stefania, Schäffer, Stefan A., Sherman, Jeffrey A., Sonderhouse, Lindsay, Yao, Jian, Ye, Jun, Zhang, Xiaogang, Newbury, Nathan R. & Sinclair, Laura C. (2020). Optical atomic clock comparison through turbulent air. Physical Review Research 2(3).
- Gregory, P.D., Blackmore, J.A., Bromley, S.L. & Cornish, S.L. (2020). Loss of ultracold 87Rb133Cs molecules via optical excitation of long-lived two-body collision complexes. Physical Review Letters 124(16): 163402.
- Bothwell, Tobias, Kedar, Dhruv, Oelker, Eric, Robinson, John M, Bromley, Sarah L, Tew, Weston L, Ye, Jun & Kennedy, Colin J (2019). JILA SrI optical lattice clock with uncertainty of $2.0 \times 10^{-18}$. Metrologia 56(6): 065004.
- Bromley, S. L., Kolkowitz, S., Bothwell, T., Kedar, D., Safavi-Naini, A., Wall, M. L., Salomon, C., Rey, A. M. & Ye, J. (2018). Dynamics of interacting fermions under spin-orbit coupling in an optical lattice clock. Nature Physics 14(4): 399-404.
- Kolkowitz, S., Bromley, S. L., Bothwell, T., Wall, M. L., Marti, G. E., Koller, A. P., Zhang, X., Rey, A. M. & Ye, J. (2017). Spin-orbit-coupled fermions in an optical lattice clock. Nature 542(7639): 66-70.
- Bromley, S. L., Zhu, B., Bishof, M., Zhang, X., Bothwell, T., Schachenmayer, J., Nicholson, T. L., Kaiser, R., Yelin, S. F., Lukin, M. D., Rey, A. M. & Ye, J. (2016). Collective atomic scattering and motional effects in a dense coherent medium. Nature Communications 7: 11039
- Zhang, X., Bishof, M., Bromley, S. L., Kraus, C. V., Safronova, M. S., Zoller, P., Rey, A. M. & Ye, J. (2014). Spectroscopic observation of SU(N)-symmetric interactions in Sr orbital magnetism. Science 345(6203): 1467-1473.
- Bloom, B. J., Nicholson, T. L., Williams, J. R., Campbell, S. L., Bishof, M., Zhang, X., Zhang, W., Bromley, S. L. & Ye, J. (2014). An optical lattice clock with accuracy and stability at the 10−18 level. Nature 506(7486): 71-75.
- Bruce, Graham D., Bromley, Sarah L., Smirne, Giuseppe, Torralbo-Campo, Lara & Cassettari, Donatella (2011). Holographic power-law traps for the efficient production of Bose-Einstein condensates. Physical Review A 84(5): 053410.