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seminar Date  
Date & Time April 6, 2016 (Wed), 3:30 PM 
Venue E6-2, RM #1323 
Speaker Dr. Andrei Matlashov (Los Alamos National Laboratory) 

Physics Department Special Seminar will be held as below.

Anyone interested in this topic is warmly welcomed.

 

Superconducting Quantum Interference Devices for Precision Detection  
 
Dr. Andrei Matlashov (Los Alamos National Laboratory)
April 6, 2016 (Wed), 3:30 PM

E6-2, RM #1323
 
Abstract:  

Superconducting weak-link junctions and Quantum Interference Devices have been invented 50 years ago. This invention has prompted some interesting quantum physics, but the most significantly SQUIDs have brought a break-through to the field of experimental physics in building practical instruments with signal resolution close to the theoretical limit. This development has fundamentally changed experimental physics and precision instrumentation. 
   
 The first immediate consequence of invention of SQUID-based instrumentation was the appearance of Biomagnetism – a research field associated with measurements of extremely weak magnetic fields of biological origin, such as magneto-cardiography or MCG and magneto-encephalography or MEG. SQUID technology has significantly improved signal resolution in multiple areas of research, which had notable effects in the fields of biology, chemistry, astronomy, many applied engineering areas, and experimental physics, including elementary particle physics and axions search. 
 

In this presentation, I will briefly review my more than 30 years of experience working in development of SQUID-based instrumentation in various fields of application. It includes Biomagnetism, non-destructive evaluation, ultra-low field magnetic resonance imaging, explosive detection, and magnetic relaxometry with nano-markers. I will also discuss SQUID applications in experimental physics including elementary particle physics.  

번호 seminar Date Venue 제목
공지     Spring 2019: Physics Seminar Serises
공지     Spring 2019: Physics Colloquium
공지   Seminar Room #1323  Fall 2017: Physics Seminar Serises
공지   Seminar Room 1501  Fall 2017: Physics Colloquium
221   E6-2, #1323  Electron Tunneling Spectroscopy of Single and Bilayer Graphene with Hexagonal Boron Nitride as Tunneling Barrier
220   E6-2, #1323  Introducing extra dimensions to spectroscopic studies of advanced quantum materials
219   E6-2, #1323  Samarium Hexaboride: Is it a Topological insulator?
218   E6-2, #1323  Hybrid solid state spin qubits in wide bandgap semiconductors
217   E4(KI Building), Connect room (2nd fl.)  Functional Imaging & Monitoring of Brain & Breast with Diffuse Light
216   E6-2, #1323  SWELLABLE COLLOIDAL PARTICLES ARE SWELL
215   E6-2, #1323  Dynamical mean field theory studies on heavy fermion system
214   E6-2, #1323  Quantum spin liquid in the 1/3 depleted triangular lattice Ba3(Ru1-xIrx)Ti2O9
213   E4(KI Building), Maxtrix Hall (2nd fl.)  Wavefront engineering for in-vivo Deep brain imaging
212   E6-2, #1323  Mott Physics in the Strong Spin-Orbit Coupling Regime
211   E6-2, #1323  Electrochemistry on Nano- and Atomic Levels: Scanning Probe Microscopy Meets Deep Data
210   E6, 1501  Physics Colloquium : 2016 Spring file
209   E6-2. 1st fl. #1501  Topological phases of matter in nonequilibrium: Topology of the Wannier-Stark ladder
208   E6-2. 1st fl. #1501  Jan. Switching handedness of of chiral solitons in Z4 topological insulators
207   E6-2, 1501  Physics Seminar Serises : 2016 Spring file
206   KAIST Natural Science Building (E6-2), RM #4314  Radio frequency engineering
»   E6-2, RM #1323  Superconducting Quantum Interference Devices for Precision Detection
204   E6-2. 1st fl. #1501  Interference of single charged particles without a loop and dynamic nonlocality
203   E6-2. 1st fl. #1501  Cotunneling drag effect in Coulomb-coupled quantum dots
202   E6-2. 1st fl. #1322  A new impurity solver for multi-orbital systems: adaptive truncation of the Hilbert space