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teamb2023 [2023/02/23 16:13] – [Targets] nuiciseteamb2023 [2023/03/19 22:02] (current) – [Team B] nuicise
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 **Supporter**: Ph.D. student Quyen Phan; M.Sc. Sang Truong **Supporter**: Ph.D. student Quyen Phan; M.Sc. Sang Truong
  
 +**Members**:
 +  * Nguyen Thi Yen Binh
 +  * Trinh Hoang Dieu Ngan
 +  * Dang Quoc Trieu
 +  * Nguyen Duc Phu
 +  * Nguyen Thi Nhung
 +
 +[[https://ifirse.icise.vn/nugroup/hardwarecamp/uploads/Hardware_Camp_Beamer-GroupB.pdf|Group B Final presentation]] and [[https://ifirse.icise.vn/nugroup/hardwarecamp/uploads/GroupB%20-%20Hardware%20Camp%20Report.pdf|final report]]
 ===== Targets ===== ===== Targets =====
   * **MPPC properties**   * **MPPC properties**
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     * Fit with exponential and/or oscilloscope measurement function      * Fit with exponential and/or oscilloscope measurement function 
  
-  * Cosmic muon counter +  * **Cosmic muon counter** 
     * calculate the rate with area of detector (size of plastic scintillator)     * calculate the rate with area of detector (size of plastic scintillator)
     * Scintillator inefficiency (rate of 1,2,4; vs rate of 1,2,3,4)     * Scintillator inefficiency (rate of 1,2,4; vs rate of 1,2,3,4)
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 ===== Hands-on Activities ===== ===== Hands-on Activities =====
-1. Act#1 (1.5h, Feb. 27 am): safety, lab arrangement, components, rules; light source (LED)  driven with 1. Act#1 (1.5h, Feb. 27 AM): safety, lab arrangement, components, rules; light source (LED)  driven with waveform generator, arduino or analog discovery; various LED wavelength; soldering a circuit for LED (this is to use with MPPC later, so think a bit about design to easily coupling to MPPC (direct or with optical fibers, mimicking the use of the WLS))+1. Act#1 (1.5h, Feb. 27 AM): safety, lab arrangement, components, rules; light source (LED)  driven with waveform generator, arduino or analog discovery; various LED wavelength; soldering a circuit for LED (this is to use with MPPC later, so think a bit about design to easily coupling to MPPC (direct or with optical fibers, mimicking the use of the WLS))
  
-2. Act #2 (1.75h, Feb. 27 PM) oscilloscope, signal generation (with NIM or function generation); MPPC (a SiPM type) circuit, +2. Act #2 (1.75h, Feb. 27 PM) oscilloscope functionality, signal generation with analog discovery, counting function  and coincidence pattern trigger
  
-3. Act #3 (2.75h, Feb. 28 AM): MPPC circuit; soldering, testing signal, pedestal; noise mitigation with Faraday case+3. Act #3 (2.75h, Feb. 28 AM): Single MPPC circuit; soldering, testing signal, pedestal; noise mitigation with Faraday case, checked if can see single P.E without amplifier? 
  
-4.  Act #4 (2.75h, Feb. 28 PM): Light tightening; MPPC characteristics (noise rate, gain, supply voltage dependence; timing response); measure the speed of light in the optical fibers if having time (concept of light detection and ranging or LiDAR in short); NIM modules to use: disciminator and scaler+4.  Act #4 (2.75h, Feb. 28 PM): Start working with MPPC arraymeasure MPPC characteristics (noise rate, gain; timing response); measure the fluorescence lifetime with Thorlabs fluorescence plates
  
-5.  Act #5 (2.75h, Mar. 1 AM): Work in combination of Scintillator, wavelength shifting fiber and photosensor; concept of muon counter; NIM modules to use: discriminator, scaler, coincidence (and delay if needed)+5.  Act #5 (2.75h, Mar. 1 AM): Continue with fluorescence lifetime measurement if needed. measure coincidence rate. Work in combination of Scintillator, wavelength shifting fiber and photosensor; concept of muon counter; NIM modules to use: discriminator, scaler, coincidence (and delay if needed)
  
 6.  Act #6 (2.75h, Mar. 1 PM): Data taking and analysis 6.  Act #6 (2.75h, Mar. 1 PM): Data taking and analysis
teamb2023.1677194008.txt.gz · Last modified: 2023/02/23 16:13 by nuicise