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Quantum Algorithms
Universal state orthogonalizer and qubit generator
arXiv
Authors: Antonio S. Coelho, Luca S. Costanzo, Alessandro Zavatta, Catherine Hughes, M. S. Kim, Marco Bellini
Year
2014
Paper ID
8132
Status
Preprint
Abstract Read
~2 min
Abstract Words
153
Citations
N/A
Abstract
The superposition principle is at the heart of quantum mechanics and at the root of many paradoxes arising when trying to extend its predictions to our everyday world. Schroedinger's cat is the prototype of such paradoxes and here, in contrast to many others, we choose to investigate it from the operational point of view. We experimentally demonstrate a universal strategy for producing an unambiguously distinguishable type of superposition, that of an arbitrary pure state and its orthogonal. It relies on only a limited amount of information about the input state to first generate its orthogonal one. Then, a simple change in the experimental parameters is used to produce arbitrary superpositions of the mutually orthogonal states. Constituting a sort of Schroedinger's black box, able to turn a whole zoo of input states into coherent superpositions, our scheme can produce arbitrary continuous-variable optical qubits, which may prove practical for implementing quantum technologies and measurement tasks.
Why This Paper Matters
- It adds a 2014 reference point for readers tracking recent quantum research.
- The superposition principle is at the heart of quantum mechanics and at the root of many paradoxes arising when trying to extend its predictions to our everyday world.
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