We propose and demonstrate experimentally the discrimination between two spin states of an atom purely on the basis of their angular momentum. The discrimination relies on angular momentum selection rules and does not require magnetic effects such as a magnetic dipole moment of the atom or an applied magnetic field. The central ingredient is to prevent by coherent population trapping an optical pumping process which would otherwise relax the spin state before a detectable signal could be obtained. We detected the presence or absence of a single quantum (1ħ) of angular momentum in a trapped calcium ion in a single observation with success probability 0.86. As a practical technique, the method can be applied to read out some types of quantum ...
We report on the detection of individual spin quantum transitions of a single trapped antiproton in ...
We propose a scheme to read out the spin of a single electron quantum bit in a surface Paul trap usi...
It is well known that electron spin is quantized, and is measured to be either spin up or spin down ...
We propose and demonstrate experimentally the discrimination between two spin states of an atom pure...
We propose and demonstrate experimentally the discrimination between two spin states of an atom pure...
We experimentally investigate three methods, utilizing different atomic observables and entangled st...
We propose interferometric methods capable of measuring either the total angular momentum, or simult...
We demonstrate the preparation and coherent control of the angular momentum state of a two-ion cryst...
We propose detecting the magnetic field gradient produced by the magnetic dipole moment of a single ...
We propose an interferometric method for measuring the orbital angular momentum of single photons. W...
We study the interaction of light beams carrying angular momentum with a single, trapped and well lo...
In the spirit of quantum nondemolition measurements, we show that by exploiting suitable vibronic co...
An important task for quantum-information processing is optimal discrimination between two nonorthog...
We report on the detection of individual spin quantum transitions of a single trapped antiproton in ...
We propose a scheme to read out the spin of a single electron quantum bit in a surface Paul trap usi...
It is well known that electron spin is quantized, and is measured to be either spin up or spin down ...
We propose and demonstrate experimentally the discrimination between two spin states of an atom pure...
We propose and demonstrate experimentally the discrimination between two spin states of an atom pure...
We experimentally investigate three methods, utilizing different atomic observables and entangled st...
We propose interferometric methods capable of measuring either the total angular momentum, or simult...
We demonstrate the preparation and coherent control of the angular momentum state of a two-ion cryst...
We propose detecting the magnetic field gradient produced by the magnetic dipole moment of a single ...
We propose an interferometric method for measuring the orbital angular momentum of single photons. W...
We study the interaction of light beams carrying angular momentum with a single, trapped and well lo...
In the spirit of quantum nondemolition measurements, we show that by exploiting suitable vibronic co...
An important task for quantum-information processing is optimal discrimination between two nonorthog...
We report on the detection of individual spin quantum transitions of a single trapped antiproton in ...
We propose a scheme to read out the spin of a single electron quantum bit in a surface Paul trap usi...
It is well known that electron spin is quantized, and is measured to be either spin up or spin down ...