Updates on the experiments X17

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In summary: The experiment is sensitive to the production of particles with spin up or down. The first data taking is planned for 2023, and the expected data taking time is 10 years. The experimental design is based on a multiwire proportional chamber and a scintillator array. The positron beam will be collimated by a 1760 mm diameter focusing mirror and will have a flux of 10 pb/s.The first results of the experiment are expected in 2022.
  • #36
ie

Screenshot 2023-01-28 at 15-43-54 Updates on the experiments X17.png

Screenshot 2023-01-28 at 12-32-26 Updates on the experiments X17.png
Screenshot 2023-01-28 at 12-31-37 Updates on the experiments X17.png
Screenshot 2023-01-28 at 12-33-10 Updates on the experiments X17.png

Screenshot 2023-01-28 at 12-33-10 Updates on the experiments X17.png
Screenshot 2023-01-28 at 12-33-10 Updates on the experiments X17.png
Screenshot 2023-01-28 at 12-41-28 Updates on the experiments X17.png
Screenshot 2023-01-28 at 15-43-54 Updates on the experiments X17.png


Screenshot 2023-01-28 at 16-08-47 Updates on the experiments X17.png


Screenshot 2023-01-28 at 16-08-47 Updates on the experiments X17.png

MEG II data collected samples evidence of X17
 
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  • #37
image.png

e-e+ and target

actual MEG II data February 2022

image.png


x17

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same anomaly

independent evidence for x17
 

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  • #38
It is very brave of you to claim an experiment sees something that they claim they don't.
 
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  • #40
There seems a difference of opinion in this thread so I am closing it for moderation.

Please stay tuned for further updates.
 
<h2>1. What is the purpose of experiment X17?</h2><p>The purpose of experiment X17 is to investigate the existence of a new subatomic particle, which has been given the name X17. This particle could potentially explain certain unexplained phenomena in the field of physics.</p><h2>2. What are the latest findings from experiment X17?</h2><p>The latest findings from experiment X17 suggest that the particle may indeed exist, as it has been observed in multiple experiments. However, further research is needed to confirm its existence and understand its properties.</p><h2>3. How is experiment X17 being conducted?</h2><p>Experiment X17 is being conducted using a large particle accelerator, which allows scientists to collide particles at high speeds and observe the resulting interactions. Data from these collisions is then analyzed to look for evidence of the X17 particle.</p><h2>4. What are the potential implications of the X17 particle?</h2><p>If the X17 particle is proven to exist, it could have significant implications for our understanding of the universe and the laws of physics. It could also potentially lead to new technologies and advancements in the field of particle physics.</p><h2>5. When can we expect more updates on experiment X17?</h2><p>As with any scientific research, it is difficult to predict when new updates will be available. However, scientists are actively working on analyzing data and conducting further experiments to learn more about the X17 particle, so updates can be expected in the near future.</p>

1. What is the purpose of experiment X17?

The purpose of experiment X17 is to investigate the existence of a new subatomic particle, which has been given the name X17. This particle could potentially explain certain unexplained phenomena in the field of physics.

2. What are the latest findings from experiment X17?

The latest findings from experiment X17 suggest that the particle may indeed exist, as it has been observed in multiple experiments. However, further research is needed to confirm its existence and understand its properties.

3. How is experiment X17 being conducted?

Experiment X17 is being conducted using a large particle accelerator, which allows scientists to collide particles at high speeds and observe the resulting interactions. Data from these collisions is then analyzed to look for evidence of the X17 particle.

4. What are the potential implications of the X17 particle?

If the X17 particle is proven to exist, it could have significant implications for our understanding of the universe and the laws of physics. It could also potentially lead to new technologies and advancements in the field of particle physics.

5. When can we expect more updates on experiment X17?

As with any scientific research, it is difficult to predict when new updates will be available. However, scientists are actively working on analyzing data and conducting further experiments to learn more about the X17 particle, so updates can be expected in the near future.

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