Cold atoms confined inside a hollow-core photonic-crystal fiber with core diameters of a few photon wavelengths are a promising medium for studying nonlinear optical interactions at extremely low light levels. The high electric field intensity per photon and interaction lengths not limited by diffraction are some of the unique features of this system. Here, we present the results of our first nonlinear optics experiments in this system including a demonstration of an all-optical switch that is activated at energies corresponding to few hundred optical photons per pulse.Packard FoundationDARPANational Science FoundationMIT-Harvard Center for Ultracold Atom
Using analytical modeling and detailed numerical simulations, we investigate properties of hybrid sy...
All-optical devices allow improvements in the speed of optical communication and computation systems...
In this thesis I report the first experimental observation of an interaction between a postselected ...
Cold atoms confined inside a hollow-core photonic-crystal fiber with core diameters of a few photon ...
We demonstrate a fiber-optical switch that is activated at tiny energies corresponding to a few hund...
We demonstrate a fiber-optical switch that operates with a few hundred photons per switching pulse. ...
Loading cold atoms into a hollow-core optical fiber enables all-optical switching with just several ...
A Viewpoint on: Efficient All-Optical Switching Using Slow Light within a Hollow Fiber M. Bajcsy, S....
We review our recent experiments demonstrating a hollow-core photonic-crystal fiber loaded with lase...
The ability to control light with light at ultralow powers has been a major avenue of research in ph...
All-optical devices allow improvements in the speed of optical communication and computation systems...
Abstract—We review our recent experiments demonstrating a hollow-core photonic-crystal fiber loaded ...
Using analytical modeling and detailed numerical simulations, we investigate properties of hybrid sy...
Low-light-level optical nonlinearities are of significant interest for perform-ing operations such a...
We demonstrate all-optical switching at 1550nm in a photonic crystal fiber consisting of two weakly ...
Using analytical modeling and detailed numerical simulations, we investigate properties of hybrid sy...
All-optical devices allow improvements in the speed of optical communication and computation systems...
In this thesis I report the first experimental observation of an interaction between a postselected ...
Cold atoms confined inside a hollow-core photonic-crystal fiber with core diameters of a few photon ...
We demonstrate a fiber-optical switch that is activated at tiny energies corresponding to a few hund...
We demonstrate a fiber-optical switch that operates with a few hundred photons per switching pulse. ...
Loading cold atoms into a hollow-core optical fiber enables all-optical switching with just several ...
A Viewpoint on: Efficient All-Optical Switching Using Slow Light within a Hollow Fiber M. Bajcsy, S....
We review our recent experiments demonstrating a hollow-core photonic-crystal fiber loaded with lase...
The ability to control light with light at ultralow powers has been a major avenue of research in ph...
All-optical devices allow improvements in the speed of optical communication and computation systems...
Abstract—We review our recent experiments demonstrating a hollow-core photonic-crystal fiber loaded ...
Using analytical modeling and detailed numerical simulations, we investigate properties of hybrid sy...
Low-light-level optical nonlinearities are of significant interest for perform-ing operations such a...
We demonstrate all-optical switching at 1550nm in a photonic crystal fiber consisting of two weakly ...
Using analytical modeling and detailed numerical simulations, we investigate properties of hybrid sy...
All-optical devices allow improvements in the speed of optical communication and computation systems...
In this thesis I report the first experimental observation of an interaction between a postselected ...