One of the most widely used techniques for measuring the orbital angular momentum (OAM) components of a light beam is to flatten the spiral phase front of a mode, in order to couple it to a single-mode optical fiber (SMOF). This method, however, suffers from an efficiency that depends on the OAM of the initial mode and on the presence of higher-order radial modes. The reason is that once the phase has been flattened, the field retains its ringed intensity pattern and is therefore a nontrivial superposition of purely radial modes, of which only the fundamental one couples to a SMOF. In this paper, we study the efficiency of this technique both theoretically and experimentally. We find that even for low values of the OAM, a large amount of li...
We demonstrate a powerful method to simultaneously measure both the azimuthal and radial indices of ...
We present a novel technique to measure the orbital angular momentum (OAM) density of light. The tec...
Encoding/decoding off-axis points with discrete orbital angular momentum (OAM) modes is investigated...
One of the most widely used techniques for measuring the orbital angular momentum (OAM) components o...
One of the most widely used techniques for measuring the orbital angular momentum (OAM) components o...
One of the most widely used techniques for measuring the orbital angular momentum (OAM) components o...
The desire to increase the amount of information that can be encoded onto a single photon has driven...
We propose and demonstrate a simple and easy-to-implement projective-measurement protocol to determi...
The desire to increase the amount of information that can be encoded onto a single photon has driven...
We propose and demonstrate a simple and easy-to-implement projective-measurement protocol to determi...
A light beam may be separated into its orbital-angular momentum (OAM) components by a geometric opti...
We propose and demonstrate a simple and easy-to-implement projective-measurement protocol to determi...
Thesis (Ph.D.)--Boston UniversityInternet data traffic capacity is rapidly reaching limits imposed b...
We demonstrate a powerful method to simultaneously measure both the azimuthal and radial indices of ...
We demonstrate a powerful method to simultaneously measure both the azimuthal and radial indices of ...
We demonstrate a powerful method to simultaneously measure both the azimuthal and radial indices of ...
We present a novel technique to measure the orbital angular momentum (OAM) density of light. The tec...
Encoding/decoding off-axis points with discrete orbital angular momentum (OAM) modes is investigated...
One of the most widely used techniques for measuring the orbital angular momentum (OAM) components o...
One of the most widely used techniques for measuring the orbital angular momentum (OAM) components o...
One of the most widely used techniques for measuring the orbital angular momentum (OAM) components o...
The desire to increase the amount of information that can be encoded onto a single photon has driven...
We propose and demonstrate a simple and easy-to-implement projective-measurement protocol to determi...
The desire to increase the amount of information that can be encoded onto a single photon has driven...
We propose and demonstrate a simple and easy-to-implement projective-measurement protocol to determi...
A light beam may be separated into its orbital-angular momentum (OAM) components by a geometric opti...
We propose and demonstrate a simple and easy-to-implement projective-measurement protocol to determi...
Thesis (Ph.D.)--Boston UniversityInternet data traffic capacity is rapidly reaching limits imposed b...
We demonstrate a powerful method to simultaneously measure both the azimuthal and radial indices of ...
We demonstrate a powerful method to simultaneously measure both the azimuthal and radial indices of ...
We demonstrate a powerful method to simultaneously measure both the azimuthal and radial indices of ...
We present a novel technique to measure the orbital angular momentum (OAM) density of light. The tec...
Encoding/decoding off-axis points with discrete orbital angular momentum (OAM) modes is investigated...