Integrated Devices for Quantum Information with Polarization Encoded Qubits

Nonfiction, Science & Nature, Science, Physics, Optics, Computers, Advanced Computing, Information Technology
Cover of the book Integrated Devices for Quantum Information with Polarization Encoded Qubits by Linda Sansoni, Springer International Publishing
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: Linda Sansoni ISBN: 9783319071039
Publisher: Springer International Publishing Publication: June 3, 2014
Imprint: Springer Language: English
Author: Linda Sansoni
ISBN: 9783319071039
Publisher: Springer International Publishing
Publication: June 3, 2014
Imprint: Springer
Language: English

Quantum information science has found great experimental success by exploiting single photons. To date, however, the majority of quantum optical experiments use large-scale (bulk) optical elements bolted down to an optical bench, an approach that ultimately limits the complexity and stability of the quantum circuits required for quantum science and technology. The realization of complex optical schemes involving large numbers of elements requires the introduction of waveguide technology to achieve the desired scalability, stability and miniaturization of the device. This thesis reports on surprising findings in the field of integrated devices for quantum information. Here the polarization of the photon is shown to offer a suitable degree of freedom for encoding quantum information in integrated systems. The most important results concern: the quantum interference of polarization entangled photons in an on-chip directional coupler; the realization of a Controlled-NOT (CNOT) gate operating with polarization qubits; the realization of a quantum walk of bosons and fermions in an ordered optical lattice and the quantum simulation of Anderson localization of bosons and fermions simulated by polarization entangled photons in a disordered quantum walk. The findings presented in this thesis represent an important step towards the integration of a complete quantum photonic experiment in a chip.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

Quantum information science has found great experimental success by exploiting single photons. To date, however, the majority of quantum optical experiments use large-scale (bulk) optical elements bolted down to an optical bench, an approach that ultimately limits the complexity and stability of the quantum circuits required for quantum science and technology. The realization of complex optical schemes involving large numbers of elements requires the introduction of waveguide technology to achieve the desired scalability, stability and miniaturization of the device. This thesis reports on surprising findings in the field of integrated devices for quantum information. Here the polarization of the photon is shown to offer a suitable degree of freedom for encoding quantum information in integrated systems. The most important results concern: the quantum interference of polarization entangled photons in an on-chip directional coupler; the realization of a Controlled-NOT (CNOT) gate operating with polarization qubits; the realization of a quantum walk of bosons and fermions in an ordered optical lattice and the quantum simulation of Anderson localization of bosons and fermions simulated by polarization entangled photons in a disordered quantum walk. The findings presented in this thesis represent an important step towards the integration of a complete quantum photonic experiment in a chip.

More books from Springer International Publishing

Cover of the book Computational Science and Its Applications – ICCSA 2017 by Linda Sansoni
Cover of the book Italians in Australia by Linda Sansoni
Cover of the book Successful Educational Actions for Inclusion and Social Cohesion in Europe by Linda Sansoni
Cover of the book Computer-Aided Design of Microfluidic Very Large Scale Integration (mVLSI) Biochips by Linda Sansoni
Cover of the book An Introduction to Observational Astrophysics by Linda Sansoni
Cover of the book Brain Drain and Gender Inequality in Turkey by Linda Sansoni
Cover of the book Time Perspective Theory; Review, Research and Application by Linda Sansoni
Cover of the book Digital Signal Processing for Wireless Communication using Matlab by Linda Sansoni
Cover of the book Concrete Structures by Linda Sansoni
Cover of the book Pharmaceutical Regulatory Environment by Linda Sansoni
Cover of the book Pseudo-Populations by Linda Sansoni
Cover of the book The Unhappy Total Knee Replacement by Linda Sansoni
Cover of the book Chest Sonography by Linda Sansoni
Cover of the book Husserlian Phenomenology by Linda Sansoni
Cover of the book Advances in Human Factors in Robots and Unmanned Systems by Linda Sansoni
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy