Difference between revisions of "Particle Detection B"

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Put here all relevant material for students
 
Put here all relevant material for students
  
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== To do ==
 +
 +
* Email to students
  
 
== Guidelines ==
 
== Guidelines ==
  
  
=== Lecture 1: Intro and PSD ===
+
=== Lecture 1: Intro and Power Spectral Density ===
 +
 
 +
 
 +
=== Lecture 2: Gaussian beam, Fabry-Perot cavities ===
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 +
 
 +
=== Lecture 3: Interferometry (general, Michelson) and Interferometer for GW detection (power and signal recycling) ===
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 +
 
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=== Lecture 4: Low frequency noise: seismic and Newtonian noise, suspension systems ===
 +
 
 +
 
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=== Lecture 5: Low to mid frequency noise: suspension wire and mirror thermal noise, coatings, monolithic suspensions ===
 +
 
 +
 
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=== Lecture 6: Low to high frequency noise: quantum noise, laser (power), squeezing ===
  
  
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=== Lecture 7: Sensing & control and/or future detectors ===
  
 
== Literature ==
 
== Literature ==

Revision as of 11:41, 31 March 2020

Put here all relevant material for students

To do

  • Email to students

Guidelines

Lecture 1: Intro and Power Spectral Density

Lecture 2: Gaussian beam, Fabry-Perot cavities

Lecture 3: Interferometry (general, Michelson) and Interferometer for GW detection (power and signal recycling)

Lecture 4: Low frequency noise: seismic and Newtonian noise, suspension systems

Lecture 5: Low to mid frequency noise: suspension wire and mirror thermal noise, coatings, monolithic suspensions

Lecture 6: Low to high frequency noise: quantum noise, laser (power), squeezing

Lecture 7: Sensing & control and/or future detectors

Literature