Trapping or cooling molecules has rallied a long-standing effort for its impact in exploring new frontiers in physics and in finding new phase of matter for quantum technologies. Here we demonstrate a system for light-trapping molecules and stimulated Raman scattering based on optically self-nanostructured molecular hydrogen in hollow-core photonic crystal fibre. A lattice is formed by a periodic and ultra-deep potential caused by a spatially modulated Raman saturation, where Raman-active molecules are strongly localized in a one-dimensional array of nanometre-wide sections. Only these trapped molecules participate in stimulated Raman scattering, generating high-power forward and backward Stokes continuous-wave laser radiation in the Lamb-D...
Backward stimulated Raman scattering in gases provides a promising route to the compression and ampl...
Author Institution: Instituto de Estructura de la Materia (IEM-CSIC), Serrano 123, E-28006 Madrid, S...
Ultracold molecules can be used for a diverse set of exciting applications including controlled quan...
Hollow-core photonic crystal fibre (HC-PCF) is unique host for gas-based nonlinear optical experimen...
Recently we demonstrated a system for light-trapping molecules and stimulated Raman scattering base...
Many reports on stimulated Raman scattering in mixtures of Raman-active and noble gases indicate tha...
Since their advent, hollow-core photonic crystal fibers have proved to be highly efficient for frequ...
International audienceFrequency combs are of constant significant interest for their use in diverse ...
Paper Part of Focus on New Frontiers of Cold Molecules Research A narrow-linewidth, dual-wavelengt...
In 1964 Bloembergen and Shen predicted that Raman gain could be suppressed if the rates of phonon cr...
A Sisyphean task: Laser cooling of molecules is difficult, mainly due to their rich vibrational stru...
We report on experimental and theoretical demonstrations of an optical comb spectrum based on a comb...
Trapping light with noble metal nanostructures overcomes the diffraction limit and can confine light...
The advent of broadband-guiding hollow-core photonic crystal fibers (HC-PCFs) has been a milestone ...
State-preserving frequency conversion in the optical domain is a necessary component in many configu...
Backward stimulated Raman scattering in gases provides a promising route to the compression and ampl...
Author Institution: Instituto de Estructura de la Materia (IEM-CSIC), Serrano 123, E-28006 Madrid, S...
Ultracold molecules can be used for a diverse set of exciting applications including controlled quan...
Hollow-core photonic crystal fibre (HC-PCF) is unique host for gas-based nonlinear optical experimen...
Recently we demonstrated a system for light-trapping molecules and stimulated Raman scattering base...
Many reports on stimulated Raman scattering in mixtures of Raman-active and noble gases indicate tha...
Since their advent, hollow-core photonic crystal fibers have proved to be highly efficient for frequ...
International audienceFrequency combs are of constant significant interest for their use in diverse ...
Paper Part of Focus on New Frontiers of Cold Molecules Research A narrow-linewidth, dual-wavelengt...
In 1964 Bloembergen and Shen predicted that Raman gain could be suppressed if the rates of phonon cr...
A Sisyphean task: Laser cooling of molecules is difficult, mainly due to their rich vibrational stru...
We report on experimental and theoretical demonstrations of an optical comb spectrum based on a comb...
Trapping light with noble metal nanostructures overcomes the diffraction limit and can confine light...
The advent of broadband-guiding hollow-core photonic crystal fibers (HC-PCFs) has been a milestone ...
State-preserving frequency conversion in the optical domain is a necessary component in many configu...
Backward stimulated Raman scattering in gases provides a promising route to the compression and ampl...
Author Institution: Instituto de Estructura de la Materia (IEM-CSIC), Serrano 123, E-28006 Madrid, S...
Ultracold molecules can be used for a diverse set of exciting applications including controlled quan...