We demonstrate a method for general linear optical networks that allows one to factorize any SU(n) matrix in terms of two SU(n-1) blocks coupled by an SU(2) entangling beam splitter. The process can be recursively continued in a straightforward way, ending in a tidy arrangement of SU(2) transformations. The method hinges only on a linear relationship between input and output states, and can thus be applied to a variety of scenarios, such as microwaves, acoustics, and quantum fields
Universal multiport interferometers, which can be programmed to implement any linear transformation ...
A generalization of the optical implementation of unitary transformation proposed by Reck {\it et al...
Universal multi-port interferometers that can be reconfigured to implement any unitary operation are...
We demonstrate a method for general linear optical networks that allows one to factorize any SU(n) m...
Unitary transformations are routinely modeled and implemented in the field of quantum optics. In con...
[EN] Unitary operations are a specific class of linear transformations that have become an essential...
Unitary operations are a specific class of linear transformations that have become an essential ingr...
In 1994, Reck et al. showed how to realize any unitary transformation on a single photon using a pro...
Unitary operations are a specific class of linear transformations that have become an essential ingr...
A large number of applications in classical and quantum photonics require the capability of implemen...
Decomposing complex unitary evolution into a series of constituent components is a cornerstone of pr...
Free space propagation and conventional optical systems such as lenses and mirrors all perform spati...
We show that bosonic linear unitary Bogoliubov transformations may be reduced to a standard form. Th...
The unitary evolution of linear optics can be used to model quantum computational networks. In this ...
The evolution of quantum light through linear optical devices can be described by the scattering mat...
Universal multiport interferometers, which can be programmed to implement any linear transformation ...
A generalization of the optical implementation of unitary transformation proposed by Reck {\it et al...
Universal multi-port interferometers that can be reconfigured to implement any unitary operation are...
We demonstrate a method for general linear optical networks that allows one to factorize any SU(n) m...
Unitary transformations are routinely modeled and implemented in the field of quantum optics. In con...
[EN] Unitary operations are a specific class of linear transformations that have become an essential...
Unitary operations are a specific class of linear transformations that have become an essential ingr...
In 1994, Reck et al. showed how to realize any unitary transformation on a single photon using a pro...
Unitary operations are a specific class of linear transformations that have become an essential ingr...
A large number of applications in classical and quantum photonics require the capability of implemen...
Decomposing complex unitary evolution into a series of constituent components is a cornerstone of pr...
Free space propagation and conventional optical systems such as lenses and mirrors all perform spati...
We show that bosonic linear unitary Bogoliubov transformations may be reduced to a standard form. Th...
The unitary evolution of linear optics can be used to model quantum computational networks. In this ...
The evolution of quantum light through linear optical devices can be described by the scattering mat...
Universal multiport interferometers, which can be programmed to implement any linear transformation ...
A generalization of the optical implementation of unitary transformation proposed by Reck {\it et al...
Universal multi-port interferometers that can be reconfigured to implement any unitary operation are...