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1.
Science ; 338(6107): 637-40, 2012 Nov 02.
Article in English | MEDLINE | ID: mdl-23118184

ABSTRACT

Wave-particle complementarity is one of the most intriguing features of quantum physics. To emphasize this measurement apparatus-dependent nature, experiments have been performed in which the output beam splitter of a Mach-Zehnder interferometer is inserted or removed after a photon has already entered the device. A recent extension suggested using a quantum beam splitter at the interferometer's output; we achieve this using pairs of polarization-entangled photons. One photon is tested in the interferometer and is detected, whereas the other allows us to determine whether wave, particle, or intermediate behaviors have been observed. Furthermore, this experiment allows us to continuously morph the tested photon's behavior from wavelike to particle-like, which illustrates the inadequacy of a naive wave or particle description of light.

2.
Opt Express ; 16(6): 3577-82, 2008 Mar 17.
Article in English | MEDLINE | ID: mdl-18542450

ABSTRACT

In this paper we show that by suitably tailoring the dispersion characteristics of a Bragg reflection waveguide (BRW) mode, it is possible to achieve efficient photon pair generation over a large pump bandwidth while maintaining narrow signal bandwidth. The structure proposed consists of a high index core BRW with a periodically poled GaN core and periodically stratified cladding made up of alternate layers of Al(0.02)Ga(0.98)N and Al(0.45)Ga(0.55)N. Such photon-pair generators should find applications in realizing compact and stable sources for quantum information processing.


Subject(s)
Amplifiers, Electronic , Computer-Aided Design , Lasers , Models, Theoretical , Optics and Photonics/instrumentation , Oscillometry/instrumentation , Refractometry/instrumentation , Computer Simulation , Equipment Design , Equipment Failure Analysis
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