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on
1
Intro
2
Motivation
3
Working Principle
4
Axion Dark Matter
5
Radiation from Single Mirror
6
Boost Factor 3D Simulations
7
Measuring the Boost factor
8
Full Size MADMAX
9
Technological Challenges
10
Disc Properties
11
Precision Challenges
12
Parameter Space
13
CB100 CERN 2023
14
Conclusions
15
Sensitivity of CB100 2023
Description:
Explore the search for Axion Dark Matter using a Dielectric Haloscope in this 41-minute lecture by Bernardo Ary dos Santos Garcia at the Galileo Galilei Institute. Delve into the motivation behind this research and understand the working principles of the technology. Learn about Axion Dark Matter and the radiation from a single mirror. Examine the Boost Factor through 3D simulations and discover methods for measuring it. Investigate the full-size MADMAX experiment and its technological challenges, including disc properties and precision requirements. Analyze the parameter space and gain insights into the CB100 CERN 2023 project. Conclude with an overview of the sensitivity of CB100 2023, providing a comprehensive understanding of cutting-edge research in particle physics and dark matter detection.

Searching for Axion Dark Matter with a Dielectric Haloscope

Galileo Galilei Institute
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