We demonstrate highly efficient generation of coherent 420 nm light via up-conversion of near-infrared lasers in a hot rubidium vapor cell. By optimizing pump polarizations and frequencies we achieve a single-pass conversion efficiency of 260% per Watt, significantly higher than in previous experiments. A full exploration of the coherent light generation and fluorescence as a function of both pump frequencies reveals that coherent blue light is generated close to Rb-85 two-photon resonances, as predicted by theory, but at high vapor pressure is suppressed in spectral regions that do not support phase matching or exhibit single-photon Kerr refraction. Favorable scaling of our current 1 mW blue beam power with additional pump power is predict...
In the present work the frequency up-conversion of (ps) laser pulses towards the EUV spectral regime...
This thesis was previously held under moratorium from 26th October 2018 until 15th April 2021.Therma...
Warm rubidium vapours are known to be a versatile medium for a variety of experiments in atomic phys...
We demonstrate highly efficient generation of coherent 420nm light via up-conversion of near-infrare...
Pulsed collimated blue light at 420.3 nm is generated in hot Rb vapor by upconverting the 778.10 nm ...
C1 - Journal Articles RefereedWe demonstrate production of continuous coherent blue laser light by u...
Utilizing two-photon excitation in hot Rb vapor we demonstrate the generation of collimated optical ...
We report the first use of a ring cavity to both enhance the output power and dramatically narrow t...
We report the first use of a ring cavity to both enhance the output power and dramatically narrow th...
We describe an experiment for generating and characterizing a beam of collimated blue light (CBL) in...
We report a study on the transfer of intensity correlation properties in frequency upconversion via ...
We experimentally and theoretically studied the characteristics of the collimated blue light (CBL) p...
We use two continuous-wave laser beams of 780 nm and 515 nm to optically drive Rb85 atoms in a heate...
The ability to control light with light at ultralow powers has been a major avenue of research in ph...
We observe coherent, continuous wave, 455nm blue beam production via frequency up-conversion in ces...
In the present work the frequency up-conversion of (ps) laser pulses towards the EUV spectral regime...
This thesis was previously held under moratorium from 26th October 2018 until 15th April 2021.Therma...
Warm rubidium vapours are known to be a versatile medium for a variety of experiments in atomic phys...
We demonstrate highly efficient generation of coherent 420nm light via up-conversion of near-infrare...
Pulsed collimated blue light at 420.3 nm is generated in hot Rb vapor by upconverting the 778.10 nm ...
C1 - Journal Articles RefereedWe demonstrate production of continuous coherent blue laser light by u...
Utilizing two-photon excitation in hot Rb vapor we demonstrate the generation of collimated optical ...
We report the first use of a ring cavity to both enhance the output power and dramatically narrow t...
We report the first use of a ring cavity to both enhance the output power and dramatically narrow th...
We describe an experiment for generating and characterizing a beam of collimated blue light (CBL) in...
We report a study on the transfer of intensity correlation properties in frequency upconversion via ...
We experimentally and theoretically studied the characteristics of the collimated blue light (CBL) p...
We use two continuous-wave laser beams of 780 nm and 515 nm to optically drive Rb85 atoms in a heate...
The ability to control light with light at ultralow powers has been a major avenue of research in ph...
We observe coherent, continuous wave, 455nm blue beam production via frequency up-conversion in ces...
In the present work the frequency up-conversion of (ps) laser pulses towards the EUV spectral regime...
This thesis was previously held under moratorium from 26th October 2018 until 15th April 2021.Therma...
Warm rubidium vapours are known to be a versatile medium for a variety of experiments in atomic phys...