One-way quantum computation is a very promising candidate to fulfill the capabilities of quantum information processing. Here we demonstrate an important set of unitary operations for continuous variables using a linear cluster state of four entangled optical modes. These operations are performed in a fully measurement-controlled and completely unconditional fashion. We implement three different levels of squeezing operations and a Fourier transformation, all of which are accessible by selecting the correct quadrature measurement angles of the homodyne detections. Though not sufficient, these linear transformations are necessary for universal quantum computation
In the one-way model of quantum computing, quantum algorithms are implemented using only measurement...
We describe the application of four-qubit cluster states, built on the simultaneous entanglement of ...
We show explicitly how to realize an arbitrary linear unitary Bogoliubov (LUBO) transformation on a ...
One-way quantum computation is a very promising candidate to fulfill the capabilities of quantum inf...
Quantum computing promises to exploit the laws of quantum mechanics for processing information in wa...
We demonstrate unconditional one-way quantum computation experiments using a linear cluster state of...
We describe a generalization of the cluster-state model of quantum computation to continuous-variabl...
We demonstrate a quadratic phase gate for one-way quantum computation in the continuous-variable reg...
We introduce a fully tunable entangling gate for continuous-variable one-way quantum computation. We...
Continuous-variable cluster states offer a potentially promising method of implementing a quantum co...
Standard quantum computation is based on sequences of unitary quantum logic gates that process qubit...
We experimentally demonstrate a controlled-phase gate for continuous variables using a cluster-state...
Although universal continuous-variable quantum computation cannot be achieved via linear optics (inc...
Measurement-based one-way quantum computation using cluster states as resources pro-vides an efficie...
Standard quantum computation is based on sequences of unitary quantum logic gates which process qubi...
In the one-way model of quantum computing, quantum algorithms are implemented using only measurement...
We describe the application of four-qubit cluster states, built on the simultaneous entanglement of ...
We show explicitly how to realize an arbitrary linear unitary Bogoliubov (LUBO) transformation on a ...
One-way quantum computation is a very promising candidate to fulfill the capabilities of quantum inf...
Quantum computing promises to exploit the laws of quantum mechanics for processing information in wa...
We demonstrate unconditional one-way quantum computation experiments using a linear cluster state of...
We describe a generalization of the cluster-state model of quantum computation to continuous-variabl...
We demonstrate a quadratic phase gate for one-way quantum computation in the continuous-variable reg...
We introduce a fully tunable entangling gate for continuous-variable one-way quantum computation. We...
Continuous-variable cluster states offer a potentially promising method of implementing a quantum co...
Standard quantum computation is based on sequences of unitary quantum logic gates that process qubit...
We experimentally demonstrate a controlled-phase gate for continuous variables using a cluster-state...
Although universal continuous-variable quantum computation cannot be achieved via linear optics (inc...
Measurement-based one-way quantum computation using cluster states as resources pro-vides an efficie...
Standard quantum computation is based on sequences of unitary quantum logic gates which process qubi...
In the one-way model of quantum computing, quantum algorithms are implemented using only measurement...
We describe the application of four-qubit cluster states, built on the simultaneous entanglement of ...
We show explicitly how to realize an arbitrary linear unitary Bogoliubov (LUBO) transformation on a ...