Javascript must be enabled to continue!
Design and Implementation of Matryoshka-type Neutron Spectrometer
View through CrossRef
Abstract
Aiming at portability and mobility, the design and implementation of a portable neutron spectrometer, namely the Matryoshka-type Neutron Spectrometer, was completed while considering the idea of a Bonner Sphere Spectrometer. The Matryoshka-type Neutron Spectrometer used a spherical 3He proportional counter as a thermal neutron detector. A number of cylindrical acrylic cups with diameters from 4 cm to 40 cm were made as containers for water as a moderator. The Monte Carlo method was adopted in order to obtain the energy response matrix of the Matryoshka-type Neutron Spectrometer. During the measurement, each acrylic cup contained water as a moderator, and the 3He proportional counter was set to the geometric center to perform neutron counting. With the energy response matrix obtained above, the neutron spectrum was resolved by a classical inversion algorithm. After the measurement, water was drained and the acrylic cups were placed one inside the other, like a Matryoshka doll. The design of a Matryoshka-type Neutron Spectrometer has reduced the mass and volume of the Bonner Sphere Spectrometer and was not difficult to carry around. Comparison tests acquiring background and Am-Be source neutron spectra between the Matryoshka-type Neutron Spectrometer and Bonner Sphere Spectrometer proved the effectiveness of the Matryoshka-type Neutron Spectrometer.
Ovid Technologies (Wolters Kluwer Health)
Title: Design and Implementation of Matryoshka-type Neutron Spectrometer
Description:
Abstract
Aiming at portability and mobility, the design and implementation of a portable neutron spectrometer, namely the Matryoshka-type Neutron Spectrometer, was completed while considering the idea of a Bonner Sphere Spectrometer.
The Matryoshka-type Neutron Spectrometer used a spherical 3He proportional counter as a thermal neutron detector.
A number of cylindrical acrylic cups with diameters from 4 cm to 40 cm were made as containers for water as a moderator.
The Monte Carlo method was adopted in order to obtain the energy response matrix of the Matryoshka-type Neutron Spectrometer.
During the measurement, each acrylic cup contained water as a moderator, and the 3He proportional counter was set to the geometric center to perform neutron counting.
With the energy response matrix obtained above, the neutron spectrum was resolved by a classical inversion algorithm.
After the measurement, water was drained and the acrylic cups were placed one inside the other, like a Matryoshka doll.
The design of a Matryoshka-type Neutron Spectrometer has reduced the mass and volume of the Bonner Sphere Spectrometer and was not difficult to carry around.
Comparison tests acquiring background and Am-Be source neutron spectra between the Matryoshka-type Neutron Spectrometer and Bonner Sphere Spectrometer proved the effectiveness of the Matryoshka-type Neutron Spectrometer.
Related Results
Comparative study of the effect of neutrons emitted from neutron source 241Am-Be and curcumin on MCF-7 breast cancer cells in 3D culture medium
Comparative study of the effect of neutrons emitted from neutron source 241Am-Be and curcumin on MCF-7 breast cancer cells in 3D culture medium
AbstractIntroductionCancer is one of the major medical problems threatening human health. Breast cancer is the most prevalent type of cancer in women. Reports indicate that treatme...
Study of coded source neutron imaging based on a compact accelerator
Study of coded source neutron imaging based on a compact accelerator
Compact accelerator based neutron source has lower cost and better flexibility than nuclear reactor. Neutron imaging using such a neutron source has attracted more and more attenti...
Generation and Application of Nested Entanglement in Matryoshka Quantum Resource-States
Generation and Application of Nested Entanglement in Matryoshka Quantum Resource-States
Multipartite entanglement is a resource for application in disparate protocols, of computing, communication and cryptography. Nested entanglement provides resource-states for quant...
AN ACCURATELY DETERMINING POROSITY METHOD FROM PULSED-NEUTRON ELEMENT LOGGING IN UNCONVENTIONAL RESERVOIRS
AN ACCURATELY DETERMINING POROSITY METHOD FROM PULSED-NEUTRON ELEMENT LOGGING IN UNCONVENTIONAL RESERVOIRS
Unconventional reservoirs have low porosity and complex mineral composition containing quartz, feldspar, calcite, dolomite, pyrite and kerogen, which may seriously reduce the accur...
CAN A NEW DOUBLE PARTICLE DETECTOR-CLYC (CS2LIYCL6:CE) BE USED IN PN LOGGING FOR TIGHT GAS EVALUATION?
CAN A NEW DOUBLE PARTICLE DETECTOR-CLYC (CS2LIYCL6:CE) BE USED IN PN LOGGING FOR TIGHT GAS EVALUATION?
Unconventional oil and gas resources, such as tight oil and gas, have become indispensably succeeding energy sources in nowadays. At the stage of exploration, gas saturation is ess...
Neutron-induced fission cross section of 240,242Pu
Neutron-induced fission cross section of 240,242Pu
A recent sensitivity analysis done for the new generation of fast reactors [1] has shown the importance of improved cross section data for several actinides. Among them, the neutro...
Cosmic-ray neutron production and propagation inside snow packs characterized by multi-particle Monte Carlo simulations
Cosmic-ray neutron production and propagation inside snow packs characterized by multi-particle Monte Carlo simulations
Cosmic-ray neutron sensors buried below a snow pack provide a passive and autonomous monitoring technique of snow water equivalent (SWE). The effective neutron flux is attenuated i...

