Atomic optical filters such as Faraday anomalous dispersion optical filters (FADOFs) or similar technologies can achieve very narrow optical bandwidth close to the scale of atomic linewidth, which can be greatly reduced in cold atoms. However, limited by the number of cold atoms and the size of the cold atomic cloud, the number of atoms interacting with the laser is reduced, and the transmission remains as low as 2%. In this work, we introduce the optical pumping into the cold atomic optical filter to solve this problem. Circular polarized optical pumping can produce polarization of the atomic ensemble and induce dichromatic as well as the Faraday rotation. We demonstrate a cold-atom optical filter which operates on the 87Rb 52S1/2 (F=2) to...
We report an excited-state Faraday anomalous-dispersion optical filter operating on the rubidium 5P(...
In this paper, we introduce by far the most promising schemes to realize excited state atomic filter...
This work is licensed under the Creative Commons Attribution-NonCommercial-No Derivative Works 3.0 U...
An excited state Faraday anomalous dispersion optical filter (ES-FADOF) working at the optical commu...
We demonstrate a Cs FADOF (Faraday anomalous dispersion optical filter) with a single transmission p...
The Faraday anomalous dispersion optical filter (FADOF), which has acquired wide applications, is ma...
An ultra-narrow linewidth optical filter with isotope Rb-87 vapor at 420 nm, within the best waveban...
We demonstrate a narrowband optical filter which operates on the 5~2S_(1/2) to 5~2P_(3/2) transition...
We demonstrate a narrowband optical filter which operates on the 5(2)S(1/2) to 5(2)P(3/2) transition...
We demonstrate a Faraday anomalous dispersion optical filter (FADOF) operating on 5S(1/2)-6P(3/2) tr...
We demonstrate a Cs excited state Faraday anomalous dispersion optical filter (ESFADOF) operating at...
We experimentally studied the Faraday rotation of resonant light in an optically-thick cloud of lase...
We demonstrate an atomic bandpass optical filter with an equivalent noise bandwidth less than 1 GHz ...
A 459 nm Faraday anomalous dispersion optical filter (FADOF) working at the side wings of the cesium...
In this work, a detailed theoretical analysis of 1529 nm ES-FADOF (excited state Faraday anomalous d...
We report an excited-state Faraday anomalous-dispersion optical filter operating on the rubidium 5P(...
In this paper, we introduce by far the most promising schemes to realize excited state atomic filter...
This work is licensed under the Creative Commons Attribution-NonCommercial-No Derivative Works 3.0 U...
An excited state Faraday anomalous dispersion optical filter (ES-FADOF) working at the optical commu...
We demonstrate a Cs FADOF (Faraday anomalous dispersion optical filter) with a single transmission p...
The Faraday anomalous dispersion optical filter (FADOF), which has acquired wide applications, is ma...
An ultra-narrow linewidth optical filter with isotope Rb-87 vapor at 420 nm, within the best waveban...
We demonstrate a narrowband optical filter which operates on the 5~2S_(1/2) to 5~2P_(3/2) transition...
We demonstrate a narrowband optical filter which operates on the 5(2)S(1/2) to 5(2)P(3/2) transition...
We demonstrate a Faraday anomalous dispersion optical filter (FADOF) operating on 5S(1/2)-6P(3/2) tr...
We demonstrate a Cs excited state Faraday anomalous dispersion optical filter (ESFADOF) operating at...
We experimentally studied the Faraday rotation of resonant light in an optically-thick cloud of lase...
We demonstrate an atomic bandpass optical filter with an equivalent noise bandwidth less than 1 GHz ...
A 459 nm Faraday anomalous dispersion optical filter (FADOF) working at the side wings of the cesium...
In this work, a detailed theoretical analysis of 1529 nm ES-FADOF (excited state Faraday anomalous d...
We report an excited-state Faraday anomalous-dispersion optical filter operating on the rubidium 5P(...
In this paper, we introduce by far the most promising schemes to realize excited state atomic filter...
This work is licensed under the Creative Commons Attribution-NonCommercial-No Derivative Works 3.0 U...