Electron Orbital Angular Momentum| Preparation, Application and Measurement

<p> The electron microscope is an ideal tool to prepare an electron into a specified quantum state, entangle that state with states in a specimen of interest, and measure the electron final state to indirectly gain information about the specimen. There currently exist excellent technologies to...

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Main Author: Harvey, Tyler
Language:EN
Published: University of Oregon 2017
Subjects:
Online Access:http://pqdtopen.proquest.com/#viewpdf?dispub=10599464
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spelling ndltd-PROQUEST-oai-pqdtoai.proquest.com-105994642017-10-12T16:06:17Z Electron Orbital Angular Momentum| Preparation, Application and Measurement Harvey, Tyler Nanoscience|Physics <p> The electron microscope is an ideal tool to prepare an electron into a specified quantum state, entangle that state with states in a specimen of interest, and measure the electron final state to indirectly gain information about the specimen. There currently exist excellent technologies to prepare both momentum eigenstates (transmission electron microscopy) and position eigenstates (scanning transmission electron microscopy) in a narrow band of energy eigenstates. Similarly, measurement of the momentum and position final states is straightforward with post-specimen lenses and pixelated detectors. Measurement of final energy eigenstates is possible with magnetic electron energy loss spectrometers. In 2010 and 2011, several groups independently showed that it was straightforward to prepare electrons into orbital angular momentum eigenstates. This disseratation represents my contributions to the toolset we have to control these eigenstates: preparation, application (interaction with specimen states), and measurement. My collaborators and I showed that phase diffraction gratings efficiently produce electron orbital angular momentum eigenstates; that control of orbital angular momentum can be used to probe chirality and local magnetic fields; and that there are several routes toward efficient measurement.</p><p> University of Oregon 2017-10-10 00:00:00.0 thesis http://pqdtopen.proquest.com/#viewpdf?dispub=10599464 EN
collection NDLTD
language EN
sources NDLTD
topic Nanoscience|Physics
spellingShingle Nanoscience|Physics
Harvey, Tyler
Electron Orbital Angular Momentum| Preparation, Application and Measurement
description <p> The electron microscope is an ideal tool to prepare an electron into a specified quantum state, entangle that state with states in a specimen of interest, and measure the electron final state to indirectly gain information about the specimen. There currently exist excellent technologies to prepare both momentum eigenstates (transmission electron microscopy) and position eigenstates (scanning transmission electron microscopy) in a narrow band of energy eigenstates. Similarly, measurement of the momentum and position final states is straightforward with post-specimen lenses and pixelated detectors. Measurement of final energy eigenstates is possible with magnetic electron energy loss spectrometers. In 2010 and 2011, several groups independently showed that it was straightforward to prepare electrons into orbital angular momentum eigenstates. This disseratation represents my contributions to the toolset we have to control these eigenstates: preparation, application (interaction with specimen states), and measurement. My collaborators and I showed that phase diffraction gratings efficiently produce electron orbital angular momentum eigenstates; that control of orbital angular momentum can be used to probe chirality and local magnetic fields; and that there are several routes toward efficient measurement.</p><p>
author Harvey, Tyler
author_facet Harvey, Tyler
author_sort Harvey, Tyler
title Electron Orbital Angular Momentum| Preparation, Application and Measurement
title_short Electron Orbital Angular Momentum| Preparation, Application and Measurement
title_full Electron Orbital Angular Momentum| Preparation, Application and Measurement
title_fullStr Electron Orbital Angular Momentum| Preparation, Application and Measurement
title_full_unstemmed Electron Orbital Angular Momentum| Preparation, Application and Measurement
title_sort electron orbital angular momentum| preparation, application and measurement
publisher University of Oregon
publishDate 2017
url http://pqdtopen.proquest.com/#viewpdf?dispub=10599464
work_keys_str_mv AT harveytyler electronorbitalangularmomentumpreparationapplicationandmeasurement
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