A Kinematically Beamed, Low Energy Pulsed Neutron Source for Active Interrogation

A Kinematically Beamed, Low Energy Pulsed Neutron Source for Active Interrogation PDF Author: P. Kerr
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description
We are developing a new active interrogation system based on a kinematically focused low energy neutron beam. The key idea is that one of the defining characteristics of SNM (Special Nuclear Materials) is the ability for low energy or thermal neutrons to induce fission. Thus by using low energy neutrons for the interrogation source we can accomplish three goals, (1) Energy discrimination allows us to measure the prompt fast fission neutrons produced while the interrogation beam is on; (2) Neutrons with an energy of approximately 60 to 100 keV do not fission 238U and Thorium, but penetrate bulk material nearly as far as high energy neutrons do and (3) below about 100keV neutrons lose their energy by kinematical collisions rather than via the nuclear (n,2n) or (n, n') processes thus further simplifying the prompt neutron induced background. 60 keV neutrons create a low radiation dose and readily thermal capture in normal materials, thus providing a clean spectroscopic signature of the intervening materials. The kinematically beamed source also eliminates the need for heavy backward and sideway neutron shielding. We have designed and built a very compact pulsed neutron source, based on an RFQ proton accelerator and a lithium target. We are developing fast neutron detectors that are nearly insensitive to the ever-present thermal neutron and neutron capture induced gamma ray background. The detection of only a few high energy fission neutrons in time correlation with the linac pulse will be a clear indication of the presence of SNM.

A Kinematically Beamed, Low Energy Pulsed Neutron Source for Active Interrogation

A Kinematically Beamed, Low Energy Pulsed Neutron Source for Active Interrogation PDF Author: P. Kerr
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description
We are developing a new active interrogation system based on a kinematically focused low energy neutron beam. The key idea is that one of the defining characteristics of SNM (Special Nuclear Materials) is the ability for low energy or thermal neutrons to induce fission. Thus by using low energy neutrons for the interrogation source we can accomplish three goals, (1) Energy discrimination allows us to measure the prompt fast fission neutrons produced while the interrogation beam is on; (2) Neutrons with an energy of approximately 60 to 100 keV do not fission 238U and Thorium, but penetrate bulk material nearly as far as high energy neutrons do and (3) below about 100keV neutrons lose their energy by kinematical collisions rather than via the nuclear (n,2n) or (n, n') processes thus further simplifying the prompt neutron induced background. 60 keV neutrons create a low radiation dose and readily thermal capture in normal materials, thus providing a clean spectroscopic signature of the intervening materials. The kinematically beamed source also eliminates the need for heavy backward and sideway neutron shielding. We have designed and built a very compact pulsed neutron source, based on an RFQ proton accelerator and a lithium target. We are developing fast neutron detectors that are nearly insensitive to the ever-present thermal neutron and neutron capture induced gamma ray background. The detection of only a few high energy fission neutrons in time correlation with the linac pulse will be a clear indication of the presence of SNM.

Active Interrogation with a Short-Pulse Neutron Source

Active Interrogation with a Short-Pulse Neutron Source PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 12

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A Pulsed Neutron Source

A Pulsed Neutron Source PDF Author: E. Frank Martina
Publisher:
ISBN:
Category : Neutron sources
Languages : en
Pages : 12

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Wiley Handbook of Science and Technology for Homeland Security, 4 Volume Set

Wiley Handbook of Science and Technology for Homeland Security, 4 Volume Set PDF Author: John G. Voeller
Publisher: John Wiley & Sons
ISBN: 0471761303
Category : Science
Languages : en
Pages : 2950

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Book Description
The Wiley Handbook of Science and Technology for Homeland Security is an essential and timely collection of resources designed to support the effective communication of homeland security research across all disciplines and institutional boundaries. Truly a unique work this 4 volume set focuses on the science behind safety, security, and recovery from both man-made and natural disasters has a broad scope and international focus. The Handbook: Educates researchers in the critical needs of the homeland security and intelligence communities and the potential contributions of their own disciplines Emphasizes the role of fundamental science in creating novel technological solutions Details the international dimensions of homeland security and counterterrorism research Provides guidance on technology diffusion from the laboratory to the field Supports cross-disciplinary dialogue in this field between operational, R&D and consumer communities

Detection and Intelligent Systems for Homeland Security

Detection and Intelligent Systems for Homeland Security PDF Author: John G. Voeller
Publisher: John Wiley & Sons
ISBN: 1118787420
Category : Technology & Engineering
Languages : en
Pages : 196

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Book Description
Detection and Intelligent Systems for Homeland Security features articles from the Wiley Handbook of Science and Technology for Homeland Security covering advanced technology for image and video interpretation systems used for surveillance, which help in solving such problems as identifying faces from live streaming or stored videos. Biometrics for human identification, including eye retinas and irises, and facial patterns are also presented. The book then provides information on sensors for detection of explosive and radioactive materials and methods for sensing chemical and biological agents in urban environments.

A Simple Pulsed Neutron Source Based on Crossed-field Trapping

A Simple Pulsed Neutron Source Based on Crossed-field Trapping PDF Author: Lawrence Ruby
Publisher:
ISBN:
Category : Magnets
Languages : en
Pages : 12

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A Suspendable Pulsed Neutron Source

A Suspendable Pulsed Neutron Source PDF Author: Lawrence Ruby
Publisher:
ISBN:
Category : Neutron sources
Languages : en
Pages : 18

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Detection of Special Nuclear Material in Hydrogenous Cargo Using Differential Die-away Analysis

Detection of Special Nuclear Material in Hydrogenous Cargo Using Differential Die-away Analysis PDF Author: Kelly Alexander Jordan
Publisher:
ISBN:
Category :
Languages : en
Pages : 364

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Active Interrogation of Sensitive Nuclear Material Using Laser Driven Neutron Beams

Active Interrogation of Sensitive Nuclear Material Using Laser Driven Neutron Beams PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description
An investigation of the viability of a laser-driven neutron source for active interrogation is reported. The need is for a fast, movable, operationally safe neutron source which is energy tunable and has high-intensity, directional neutron production. Reasons for the choice of neutrons and lasers are set forth. Results from the interrogation of an enriched U sample are shown.

Fast Pulsing Neutron Generators for Security Application

Fast Pulsing Neutron Generators for Security Application PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description
Active neutron interrogation has been demonstrated to be an effective method of detecting shielded fissile material. A fast fall-time/fast pulsing neutron generator is needed primarily for differential die-away technique (DDA) interrogation systems. A compact neutron generator, currently being developed in Lawrence Berkeley National Laboratory, employs an array of 0.6-mm-dia apertures (instead of one 6-mm-dia aperture) such that gating the beamlets can be done with low voltage and a small gap to achieve sub-microsecond ion beam fall time and low background neutrons. Arrays of 16 apertures (4x4) and 100 apertures (10x10) have been designed and fabricated for a beam extraction experiment. The preliminary results showed that, using a gating voltage of 1200 V and a gap distance of 1 mm, the fall time of extracted ion beam pulses is approximately 0.15 mu s at beam energies of 1000 eV.