We theoretically and experimentally examine the spectroscopy of warm atoms traversing the evanescent field of a guided mode in silica glass. The subwavelength scale of the evanescent field leads to a large spectral broadening dominated by transit-time dephasing, creating a lineshape quite different from that of atoms in free space, and also distinct from that arising from transit-time-limited interactions in a field with a Gaussian intensity profile. We show reasonable agreement between our modeling of this scenario and experimental D2-line spectra obtained from an exposed-core fiber immersed in rubidium vapor.H.P. Griesser, C. Perrella, P.S. Light and A.N. Luite
We present a theoretical model, using density matrix approach, to study the effect of weak as well a...
International audienceThe transversely confined propagating modes of an optical fiber mediate virtua...
Summarization: We study the spontaneous emission, absorption, and dispersion properties of a Λ-type ...
We demonstrate a promising fiber architecture for generating strong photon-photon interactions. Expo...
Low-light-level optical nonlinearities are of significant interest for perform-ing operations such a...
We experimentally investigate ultralow-power saturation of the rubidium D2 transitions using a taper...
In this paper, we present detailed high-resolution spectroscopy of rubidium (Rb) vapor confined with...
We demonstrate a promising fiber architecture for generating strong photon-photon interactions. Expo...
In this work, we describe experimental research on a relatively new nonlinear optics system comprise...
Thesis (Ph.D.)--University of Rochester. College of Engineering and Applied Science. Institute of Op...
We present measurements of the transmission spectra of 87Rb atoms at 780 nm in the vicinity of a nan...
The strong evanescent field around ultra-thin unclad optical fibers bears a high potential for detec...
The homogeneous linewidth of the transition I15/24−I13/24 in highly doped erbium fibers and its depe...
We show that a Rubidium vapor can be produced within the core of a photonic band-gap fiber yielding ...
The ability to control light with light at ultralow powers has been a major avenue of research in ph...
We present a theoretical model, using density matrix approach, to study the effect of weak as well a...
International audienceThe transversely confined propagating modes of an optical fiber mediate virtua...
Summarization: We study the spontaneous emission, absorption, and dispersion properties of a Λ-type ...
We demonstrate a promising fiber architecture for generating strong photon-photon interactions. Expo...
Low-light-level optical nonlinearities are of significant interest for perform-ing operations such a...
We experimentally investigate ultralow-power saturation of the rubidium D2 transitions using a taper...
In this paper, we present detailed high-resolution spectroscopy of rubidium (Rb) vapor confined with...
We demonstrate a promising fiber architecture for generating strong photon-photon interactions. Expo...
In this work, we describe experimental research on a relatively new nonlinear optics system comprise...
Thesis (Ph.D.)--University of Rochester. College of Engineering and Applied Science. Institute of Op...
We present measurements of the transmission spectra of 87Rb atoms at 780 nm in the vicinity of a nan...
The strong evanescent field around ultra-thin unclad optical fibers bears a high potential for detec...
The homogeneous linewidth of the transition I15/24−I13/24 in highly doped erbium fibers and its depe...
We show that a Rubidium vapor can be produced within the core of a photonic band-gap fiber yielding ...
The ability to control light with light at ultralow powers has been a major avenue of research in ph...
We present a theoretical model, using density matrix approach, to study the effect of weak as well a...
International audienceThe transversely confined propagating modes of an optical fiber mediate virtua...
Summarization: We study the spontaneous emission, absorption, and dispersion properties of a Λ-type ...