Weak measurements typically require two non-orthogonal states, which are not eigenstates of an observable. This is why weak values of the orbital angular momentum operator seem counterintuitive or involve additional auxiliary observables, such as polarization. We show how the use of states emerging from spiral phase plates or holograms with fractional step height can be used to construct weak values of the orbital angular momentum operator
The orbital angular momentum carried by single photons represents a promising resource in the quantu...
We calculate the relative amplitude of orbital angular momentum (OAM) entangled photon pairs from th...
We demonstrate an experimental method that allows for sensitive measurements of angular position of ...
Weak measurements typically require two non-orthogonal states, which are not eigenstates of an obser...
Using the technique of direct measurement, we observe the action of the angular momentum operator as...
We present a weak measurement protocol that permits a sensitive estimation of angular rotations base...
We present a weak measurement protocol that permits a sensitive estimation of angular rotations base...
We propose a method that directly measures the photon wavefunction in the orbital angular momentum (...
Weak measurements are a unique tool for accessing information about weakly interacting quantum syste...
The standard method for experimentally determining the probability distribution of an observable in ...
We address the issue of how to properly treat, and in a more general setting, the concept of a weak ...
The measurement of a quantum state poses a unique challenge for experimentalists. Recently, the tec...
The information carried by a photon can be encoded in one or more of many different degrees of freed...
In this paper we provide a simple, straightforward example of a specific situation in which weak-val...
A light beam may be separated into its orbital-angular momentum (OAM) components by a geometric opti...
The orbital angular momentum carried by single photons represents a promising resource in the quantu...
We calculate the relative amplitude of orbital angular momentum (OAM) entangled photon pairs from th...
We demonstrate an experimental method that allows for sensitive measurements of angular position of ...
Weak measurements typically require two non-orthogonal states, which are not eigenstates of an obser...
Using the technique of direct measurement, we observe the action of the angular momentum operator as...
We present a weak measurement protocol that permits a sensitive estimation of angular rotations base...
We present a weak measurement protocol that permits a sensitive estimation of angular rotations base...
We propose a method that directly measures the photon wavefunction in the orbital angular momentum (...
Weak measurements are a unique tool for accessing information about weakly interacting quantum syste...
The standard method for experimentally determining the probability distribution of an observable in ...
We address the issue of how to properly treat, and in a more general setting, the concept of a weak ...
The measurement of a quantum state poses a unique challenge for experimentalists. Recently, the tec...
The information carried by a photon can be encoded in one or more of many different degrees of freed...
In this paper we provide a simple, straightforward example of a specific situation in which weak-val...
A light beam may be separated into its orbital-angular momentum (OAM) components by a geometric opti...
The orbital angular momentum carried by single photons represents a promising resource in the quantu...
We calculate the relative amplitude of orbital angular momentum (OAM) entangled photon pairs from th...
We demonstrate an experimental method that allows for sensitive measurements of angular position of ...