Generation and Storage of Optical Entanglement in a Solid State Spin-wave Quantum Memory

Generation and Storage of Optical Entanglement in a Solid State Spin-wave Quantum Memory
Author :
Publisher :
Total Pages : 0
Release :
ISBN-10 : OCLC:1443169999
ISBN-13 :
Rating : 4/5 ( Downloads)

Book Synopsis Generation and Storage of Optical Entanglement in a Solid State Spin-wave Quantum Memory by : Katherine Rose Ferguson

Download or read book Generation and Storage of Optical Entanglement in a Solid State Spin-wave Quantum Memory written by Katherine Rose Ferguson and published by . This book was released on 2016 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: This thesis investigates an entangled light source with an in-built quantum memory based on the protocol of rephased amplified spontaneous emission (RASE). RASE has promising applications as a building-block of a quantum repeater: a device essential for extending the range of current quantum communication links. To be useful RASE must be able to produce high fidelity non-classical light with high efficiency, and be able to store multimode entanglement for long times. This thesis characterises the RASE source and determines to what degree these requirements can be met. The experimental RASE demonstration was conducted in a rare-earth ion doped crystal. Rare-earth ions provide a particularly promising platform for developing quantum technologies as they possess long coherence times on both the optical and hyperfine transitions. In the RASE protocol an inverted ensemble of two-level atoms amplifies the vacuum fluctuations resulting in amplified spontaneous emission (ASE). This results in entanglement between the output optical field and the collective modes of the amplifying ensemble. The collective atomic state dephases due to the inhomogeneous broadening of the ensemble but this can be rephased using photon echo techniques. When the ensemble rephases, a second optical field, the rephased amplified spontaneous emission (RASE), is emitted and is entangled with the ASE. In this thesis, a modified four-level rephasing scheme is used that allows the single photon signals to be spectrally resolved from any coherent background emission associated with the bright driving fields. In addition, four-level RASE incorporates storage on the long-lived hyperfine ground states. Two experiments are described in this thesis. First, a free-space four-level RASE demonstration using continuous-variable detection. In this experiment the different sources of noise were characterised and low noise operation was shown to be possible. Entanglement of the ASE and RASE was confirmed by violating the inseparability criterion with 98.6% confidence. In addition, entanglement was demonstrated after storage of the collective atomic state on the spin states and RASE was shown to be temporally multimode, with almost perfect distinguishability between two temporal modes demonstrated. The degree of entanglement between the ASE and RASE was limited by the rephasing efficiency, which saturated at 3%. It was determined that distortion of the rephasing pulses as they propagate through the optically thick ensemble was the probable cause of the low efficiency. The second experiment was a preliminary cavity-enhanced RASE demonstration. Theoretically perfect rephasing efficiency can be obtained by placing the crystal in an impedance-matched optical cavity. The initial cavity design showed encouraging evidence of an enhancement in the rephasing efficiency, with a 4-fold improvement over the free-space experiment. Improvements to the cavity design were proposed to allow a further increase in the rephasing efficiency of RASE. In summary, this thesis provides an extensive characterisation of an entangled light source with an in-built quantum memory based on rephasing spontaneous emission from an ensemble of ions. Importantly, the RASE scheme allows generation and storage of entanglement in a single protocol, which holds great promise for the development of integrated quantum networks.


Generation and Storage of Optical Entanglement in a Solid State Spin-wave Quantum Memory Related Books

Generation and Storage of Optical Entanglement in a Solid State Spin-wave Quantum Memory
Language: en
Pages: 0
Authors: Katherine Rose Ferguson
Categories:
Type: BOOK - Published: 2016 - Publisher:

DOWNLOAD EBOOK

This thesis investigates an entangled light source with an in-built quantum memory based on the protocol of rephased amplified spontaneous emission (RASE). RASE
A Multimode Solid-state Quantum Memory for Single Photons
Language: en
Pages: 0
Authors: Alessando Seri
Categories:
Type: BOOK - Published: 2019 - Publisher:

DOWNLOAD EBOOK

Quantum memories (QMs) for light represent a fundamental ingredient for the development of a quantum internet. Among other applications, they are a building blo
Towards Solid-State Quantum Repeaters
Language: en
Pages: 159
Authors: Kristiaan De Greve
Categories: Computers
Type: BOOK - Published: 2013-04-16 - Publisher: Springer Science & Business Media

DOWNLOAD EBOOK

Towards Solid-State Quantum Repeaters: Ultrafast, Coherent Optical Control and Spin-Photon Entanglement in Charged InAs Quantum Dots summarizes several state-of
Solid-state Optical Quantum Memory
Language: en
Pages: 63
Authors: Peter Clemens Strassmann
Categories:
Type: BOOK - Published: 2019 - Publisher:

DOWNLOAD EBOOK

A Guide to Experiments in Quantum Optics
Language: en
Pages: 588
Authors: Hans-A. Bachor
Categories: Science
Type: BOOK - Published: 2019-10-28 - Publisher: John Wiley & Sons

DOWNLOAD EBOOK

Provides fully updated coverage of new experiments in quantum optics This fully revised and expanded edition of a well-established textbook on experiments on qu