首页> 外文会议>2nd International Symposium on Physics and Technology of Sensors >IT05. Squid sensor development and itsutilization
【24h】

IT05. Squid sensor development and itsutilization

机译:IT05。鱿鱼传感器的开发及其利用

获取原文
获取原文并翻译 | 示例

摘要

DC SQUID sensors based on Nb-AlOx-Nb Josephson junctions were designed and developed at IGCAR, Kalpakkam. Necessary electronics to linearize the SQUID output was developed in-house. These SQUID sensors were used to develop various measuring systems like SQUID magnetometer, SQUID based NonDestructive Evaluation system and multichannel SQUID based biomagnetic measuring systems. In addition supportive instrumentation for SQUID magnetometer like Variable Temperature Insert(VTI) based on flow control of helium gas through a capillary tube for temperature control of the sample chamber has been designed and developed. A VTI based 7T SQUID magnetometer was developed. Development of VTI incorporated SQUID based Vibration Sample Magnetometer to improve the sensitivity is under progress. SQUID NDE has been utilized to identify subsurface defect locations in aluminum plates and optimum frequency for different defect depths. SQUID NDE system has been utilized to detect fatigue induced transformation of δ-ferrite into non-magnetic phases. Multichannel SQUIDs have been utilized inside a magnetically shielded room to measure the magnetic signals from brain(Magnetoencephalography, MEG) and heart (Magnetocaridocagraphy, MCG). Non invasive MCG has been utilized to measure magnetic signal due to HIS bundle activity in the heart and the results have been corroborated with invasive measurements. The talk outlines the development of these SQUID based instruments and their utilization in research.
机译:基于Nb-AlOx-Nb Josephson结的DC SQUID传感器是在卡尔帕卡姆IGCAR设计和开发的。内部开发了使SQUID输出线性化的必要电子设备。这些SQUID传感器用于开发各种测量系统,例如SQUID磁力计,基于SQUID的无损评估系统和基于多通道SQUID的生物磁测量系统。此外,还设计和开发了用于SQUID磁力计的辅助仪器,例如可变温度插入物(VTI),该仪器基于氦气通过毛细管对样品室进行温度控制的流量控制。开发了基于VTI的7T SQUID磁力计。正在开发基于VTI的基于SQUID的振动样品磁力计,以提高灵敏度。 SQUID NDE已被用于识别铝板中的表面缺陷位置以及不同缺陷深度的最佳频率。 SQUID NDE系统已用于检测疲劳诱导的δ铁素体转变为非磁性相。多通道SQUID已在防磁室内使用,以测量来自大脑(磁脑电图,MEG)和心脏(磁心电图,MCG)的磁信号。由于心脏中的HIS束活动,非侵入性MCG已被用于测量磁信号,并且侵入性测量已证实了该结果。演讲概述了这些基于SQUID的仪器的开发及其在研究中的应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号