Post Coupled

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OSTI.GOV Technical Report: FIELD PERTURBATIONS IN THE POST COUPLED DRIFT TUBE LINAC.
FIELD PERTURBATIONS IN THE POST COUPLED DRIFT TUBE LINAC.
Authors:
Schneider, E J; Swenson, D A
Publication Date:
1969-10-31
Research Org.:
Los Alamos Scientific Lab., N. Mex.
OSTI Identifier:
4808290
Report Number(s):
BNL-50120(Pt.2)
NSA Number:
NSA-23-019059
Resource Type:
Technical Report
Resource Relation:
Other Information: UNCL. Orig. Receipt Date: 31-DEC-69
Country of Publication:
United States
Language:
English
Subject:
N34620* -Particle Accelerators-Auxiliaries & Components; DRIFT TUBES; ELECTROMAGNETIC FIELDS; LINEAR ACCELERATORS; MEASUREMENT; PERTURBATION THEORY; LINEAR ACCELERATORS/cavity resonators for, field perturbations in post-coupled drift tube; CAVITY RESONATORS/field perturbations in post-coupled drift tube linac
Schneider, E J, and Swenson, D A. FIELD PERTURBATIONS IN THE POST COUPLED DRIFT TUBE LINAC.. United States: N. p., 1969. Web.
Schneider, E J, & Swenson, D A. FIELD PERTURBATIONS IN THE POST COUPLED DRIFT TUBE LINAC.. United States.
Schneider, E J, and Swenson, D A. Fri . "FIELD PERTURBATIONS IN THE POST COUPLED DRIFT TUBE LINAC.". United States.
@article{osti_4808290,
title = {FIELD PERTURBATIONS IN THE POST COUPLED DRIFT TUBE LINAC.},
author = {Schneider, E J and Swenson, D A},
abstractNote = {},
doi = {},
url = {https://www.osti.gov/biblio/4808290}, journal = {},
number = ,
volume = ,
place = {United States},
year = {1969},
month = {10}
}
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Post couplers longitudinally stabilize the axial electric field in a drift-tube linac (DTL) against tuning errors. Displacing the post couplers toward one end of the structure results in a ramped field that increases toward the other end. Such a ramped-gradient DTL is also stable, but some of the cavity power is dissipated on the post couplers to maintain the ramp. This paper reports bead-perturbation measurements of the post-coupler magnetic fields near the tank well. A simple physical model reproduces the measured fields with an accuracy of about 2% and yields current-density distributions on the post couplers in terms of themoreย ยป
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The Spallation Neutron Source (SNS) is a facility being designed for scientific and industrial research and development. SNS will generate and use neutrons as a diagnostic tool for medical purposes, material science, etc. The neutrons will be produced by bombarding a heavy metal target with a high-energy beam of protons, generated and accelerated with a linear particle accelerator, or linac. The low energy end of the linac consists of two room temperature copper structures, the drift tube linac (DTL), and the coupled cavity linac (CCL). Both of these accelerating structures use large amounts of electrical energy to accelerate the protonmoreย ยป
Volume 798, 10 October 2013, Pages 1-24
Review on liquid chromatography coupled to post-column derivatization.
Overview of instrumentation for post-column derivatization.
Post-column chemistries for analysis of organic compounds.
Analytical derivatization either in pre or post column modes is one of the most widely used sample pretreatment techniques coupled to liquid chromatography. In the present review article we selected to discuss the post column derivatization mode for the analysis of organic compounds. The first part of the review focuses to the instrumentation of post-column setups including not only fundamental components such as pumps and reactors but also less common parts such as static mixers and back-pressure regulators; the second part of the article discusses the most popular โchemistriesโ that are involved in post column applications, including reagent-less approaches and new sensing platforms such as the popular gold nanoparticles. Some representative recent applications are also presented as tables.
2,2โฒ-azinobis-(3-ehtylbenzothiazoline-6-sulphonate
5,5โฒ-dithiobis-(2-nitrobenzoic acid
fluorescence resonance energy transfer
high pressure liquid chromatography
7-chloro-4-nitro-2,1,3-benzoxadiazole
tris(2,2โฒ-bipyridine)rythenium (III)
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Constantinos K. Zacharis is currently an Adjunct Lecturer in the Department of Food Technology (Alexander Technological and Educational Institute of Thessaloniki, Greece) and also a post-doctorate researcher in the Laboratory of Analytical Chemistry (Department of Chemistry, Aristotle University of Thessaloniki (AUTh), Greece). Dr. Zacharis received his BSc in Chemistry (2001) and his PhD degree in Analytical Chemistry (2006) from the Department of Chemistry (AUTh). Since 2010, he is Editor of the Analytical Chemistry section of the international scientific journal Central European Journal of Chemistry and serves on the editorial boards of Instrumentation Science & Technology, Advances in Analytical Chemistry and ISRN Pharmaceutics. He has authored and co-authored more than 35 scientific articles. His current research is mainly focused on the development and application of novel analytical methodologies using separation techniques (LC, GC, CE) for pharmaceutical, food and environmental analysis.
Dr Paraskevas D. Tzanavaras received his PhD in Analytical Chemistry in 2003 from the Department of Chemistry of the Aristotelian University of Thessaloniki, Greece. Since 2007 his is a Lecturer of Analytical Chemistry at the same department. His is Editor of the Analytical Chemistry section of the international journal Central European Journal of Chemistry and Assistant Editor on Flow Injection Techniques of Analytical Letters. He has published more than 75 research and review articles in international refereed journals and he is author/co-author of several book chapters. He has edited/co-edited various special issues on different fields of analytical science and he is an active reviewer for more than 60 international journals. His current research interests include; (i) Liquid Chromatography coupled to on-line post column derivatization (HPLC-PCD), (ii) Sequential injection analysis (SI) and (iii) novel stationary phases in HPLC.
Copyright ยฉ 2013 Elsevier B.V. All rights reserved.
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