TY  - JOUR
UR  - http://dx.doi.org/10.1103/PhysRevLett.95.010501
KW  - ENTANGLEMENT
TI  - Resource-efficient linear optical quantum computation
ID  - discovery153161
SN  - 0031-9007
N1  - © 2005 The American Physical Society
JF  - PHYS REV LETT
AV  - public
IS  - 1
N2  - We introduce a scheme for linear optics quantum computation, that makes no use of teleported gates, and requires stable interferometry over only the coherence length of the photons. We achieve a much greater degree of efficiency and a simpler implementation than previous proposals. We follow the "cluster state" measurement based quantum computational approach, and show how cluster states may be efficiently generated from pairs of maximally polarization entangled photons using linear optical elements. We demonstrate the universality and usefulness of generic parity measurements, as well as introducing the use of redundant encoding of qubits to enable utilization of destructive measurements-both features of use in a more general context.
PB  - AMERICAN PHYSICAL SOC
VL  - 95
A1  - Browne, DE
A1  - Rudolph, T
Y1  - 2005/07/01/
ER  -