Light vs matter
Prof. Ofer Firstenberg
Research
Light and matter normally barely interact, and photons in vacuum pass straight through one another. The group studies regimes where this changes: by coupling light to dense ensembles of cold or hot atoms, and by mapping photons onto highly excited Rydberg states, individual photons can be made to interact strongly, scatter, bind, or block one another. The central goal is to understand and control these nonlinearities at the level of single quanta, turning a diffuse atomic gas into an optical medium with effective photon-photon forces.
This matter lies at the boundary between quantum optics, atomic physics, and many-body physics, and it underpins practical capabilities: deterministic single-photon sources and gates for photonic quantum information, quantum memories that store and retrieve light coherently, and atomic sensors that read out fields and rotations at fundamental limits. Working across both ultracold samples and room-temperature vapor cells, the group asks how coherence survives motion, collisions, and thermal noise, and how it can be engineered to make light itself behave as an interacting quantum system.
Group members
- Dr. Bankim Chandra Das
- Ashley Harkavi
- Haim Nakav
- Aditya Prakash
- Felix Ribuot-Hirsch
- Inbar Shani
- Omer Ben Ari
- Sima Sara Etkind
- Gali Etus
- Noga Flint Halamish
- Ofri Wienner
- Ava Juvenspan
12 people are listed with this group, besides the principal investigator. Names and categories are as published in the Weizmann directory and on the group's own page; rooms, phone numbers and e-mail addresses are on the People page.
Recent publications
The three most recent papers listed on the group's own publications page.
Transcribed from www.weizmann.ac.il/complex/Firstenberg/publications.