We demonstrate a Fock-state filter which is capable of preferentially blocking single photons over photon pairs. The large conditional nonlinearities are based on higher-order quantum interference, using linear optics, an ancilla photon, and measurement. We demonstrate that the filter acts coherently by using it to convert unentangled photon pairs to a path-entangled state. We quantify the degree of entanglement by transforming the path information to polarization information; applying quantum state tomography we measure a tangle of T=(20 +/- 9)%
Using a spontaneous-downconversion photon source, we produce true non-maximally entangled states, i....
We experimentally demonstrate that the entanglement between Gaussian entangled states can be increas...
An optical-quantum-circuit entanglement filter can pass a pair of pho-tons with the desired polariza...
We demonstrate a Fock-state filter which is capable of preferentially blocking single photons over p...
We propose a setup capable of generating Fock states of a single mode radiation field. The scheme is...
We propose a scheme to implement a single-mode quantum filter, which selectively eliminates the one-...
We study a novel optical setup which is able to select a specific Fock component from a generic inpu...
Entanglement is an invaluable resource to various quantum communication, metrology, and computing pr...
To acquire the best path-entangled photon Fock states for robust quantum-optical metrology with pari...
A strong optical nonlinearity arises when coherent light is scattered by a semiconductor quantum dot...
A strong optical nonlinearity arises when coherent light is scattered by a semiconductor quantum dot...
A strong optical nonlinearity arises when coherent light is scattered by a semiconductor quantum dot...
A strong optical nonlinearity arises when coherent light is scattered by a semiconductor quantum dot...
A strong optical nonlinearity arises when coherent light is scattered by a semiconductor quantum dot...
We theoretically demonstrate a method for producing the maximally path-entangled state (1/root2)(\N,...
Using a spontaneous-downconversion photon source, we produce true non-maximally entangled states, i....
We experimentally demonstrate that the entanglement between Gaussian entangled states can be increas...
An optical-quantum-circuit entanglement filter can pass a pair of pho-tons with the desired polariza...
We demonstrate a Fock-state filter which is capable of preferentially blocking single photons over p...
We propose a setup capable of generating Fock states of a single mode radiation field. The scheme is...
We propose a scheme to implement a single-mode quantum filter, which selectively eliminates the one-...
We study a novel optical setup which is able to select a specific Fock component from a generic inpu...
Entanglement is an invaluable resource to various quantum communication, metrology, and computing pr...
To acquire the best path-entangled photon Fock states for robust quantum-optical metrology with pari...
A strong optical nonlinearity arises when coherent light is scattered by a semiconductor quantum dot...
A strong optical nonlinearity arises when coherent light is scattered by a semiconductor quantum dot...
A strong optical nonlinearity arises when coherent light is scattered by a semiconductor quantum dot...
A strong optical nonlinearity arises when coherent light is scattered by a semiconductor quantum dot...
A strong optical nonlinearity arises when coherent light is scattered by a semiconductor quantum dot...
We theoretically demonstrate a method for producing the maximally path-entangled state (1/root2)(\N,...
Using a spontaneous-downconversion photon source, we produce true non-maximally entangled states, i....
We experimentally demonstrate that the entanglement between Gaussian entangled states can be increas...
An optical-quantum-circuit entanglement filter can pass a pair of pho-tons with the desired polariza...