Nondestructive dispersive imaging of rotationally excited ultracold molecules. Guan, Q., Highman, M., Meier, E., J., Williams, G., R., Scarola, V., DeMarco, B., Kotochigova, S., & Gadway, B. Physical Chemistry Chemical Physics, 22(36):20531-20544, 2020.
Nondestructive dispersive imaging of rotationally excited ultracold molecules [link]Website  doi  abstract   bibtex   10 downloads  
The setup for polarization-based dispersive imaging of molecules that relies on the intrinsic anistropy of their excited states to generate optical birefringence.
@article{
 title = {Nondestructive dispersive imaging of rotationally excited ultracold molecules},
 type = {article},
 year = {2020},
 pages = {20531-20544},
 volume = {22},
 websites = {http://xlink.rsc.org/?DOI=D0CP03419C},
 id = {e0e87260-8216-378e-8e8a-ec77a5bda324},
 created = {2020-06-08T18:06:15.045Z},
 file_attached = {true},
 profile_id = {004c1ae0-7ed4-35f3-b39b-28665b4ab9a2},
 last_modified = {2022-11-21T14:53:21.517Z},
 read = {true},
 starred = {false},
 authored = {true},
 confirmed = {true},
 hidden = {false},
 citation_key = {Guan2020},
 private_publication = {false},
 abstract = {The setup for polarization-based dispersive imaging of molecules that relies on the intrinsic anistropy of their excited states to generate optical birefringence.},
 bibtype = {article},
 author = {Guan, Qingze and Highman, Michael and Meier, Eric J. and Williams, Garrett R. and Scarola, Vito and DeMarco, Brian and Kotochigova, Svetlana and Gadway, Bryce},
 doi = {10.1039/D0CP03419C},
 journal = {Physical Chemistry Chemical Physics},
 number = {36}
}

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