Journal article
Photoinduced electron pairing in a driven cavity
- Abstract:
- We demonstrate how virtual scattering of laser photons inside a cavity via two-photon processes can induce controllable long-range electron interactions in two-dimensional materials. We show that laser light that is red(blue)-detuned from the cavity yields attractive(repulsive) interactions, whose strength is proportional to the laser intensity. Furthermore, we find that the interactions are not screened effectively except at very low frequencies. For realistic cavity parameters, laserinduced heating of the electrons by inelastic photon scattering is suppressed and coherent electron interactions dominate. When the interactions are attractive, they cause an instability in the Cooper channel at a temperature proportional to the square root of the driving intensity. Our results provide a novel route for engineering electron interactions in a wide range of two-dimensional materials including AB-stacked bilayer graphene and the conducting interface between LaAlO3 and SrTiO3.
- Publication status:
- Published
- Peer review status:
- Peer reviewed
Actions
Access Document
- Files:
-
-
(Preview, Accepted manuscript, 1.6MB, Terms of use)
-
(Preview, Supplementary materials, 524.9KB, Terms of use)
-
- Publisher copy:
- 10.1103/PhysRevLett.125.053602
Authors
- Publisher:
- American Physical Society
- Journal:
- Physical Review Letters More from this journal
- Volume:
- 125
- Issue:
- 5
- Article number:
- 053602
- Publication date:
- 2020-07-28
- Acceptance date:
- 2020-06-05
- DOI:
- EISSN:
-
1079-7114
- ISSN:
-
0031-9007
- Language:
-
English
- Keywords:
- Pubs id:
-
1121145
- Local pid:
-
pubs:1121145
- Deposit date:
-
2020-07-26
Terms of use
- Copyright holder:
- American Physical Society
- Copyright date:
- 2020
- Rights statement:
- © 2020 American Physical Society
- Notes:
- This is the accepted manuscript version of the article. The final version is available online from the American Physical Society at: 0.1103/PhysRevLett.125.053602
If you are the owner of this record, you can report an update to it here: Report update to this record