ebook img

Statistical Properties of Undulator Radiation: Classical and Quantum Effects (Springer Theses) PDF

2023·16 MB·English
Save to my drive
Quick download
Download

Download Statistical Properties of Undulator Radiation: Classical and Quantum Effects (Springer Theses) PDF Free - Full Version

by Ihar Lobach| 2023| 16| English

About Statistical Properties of Undulator Radiation: Classical and Quantum Effects (Springer Theses)

This thesis presents significant advances in the understanding of the statistical properties of undulator radiation via two experiments carried out in the Integrable Optics Test Accelerator (IOTA) storage ring at Fermilab. The first experiment studied the turn-to-turn fluctuations in the power of the radiation generated by an electron bunch. The magnitude of these fluctuations depends on the 6D phase-space distribution of the electron bunch. The author presents the most complete theoretical description of this effect to date, and shows that it can be used to measure some electron bunch parameters (e.g. its size and divergence). Remarkably, the performance of this technique improves for smaller bunches and shorter radiation wavelengths and it may, therefore, be particularly beneficial for existing state-of-the-art and next-generation low-emittance high-brightness x-ray synchrotron light sources. In the second experiment, a single electron was stored in the ring, emitting a photon only once per several hundred turns. In this regime, any classical interference-related collective effects were eliminated, and the quantum fluctuations could be studied in detail to search for possible deviations from the expected Poissonian photon statistics. In addition, the photocount arrival times were used to track the longitudinal motion of a single electron and to compare it with simulations. This served as an independent measurement of several dynamical parameters of the storage ring.

Detailed Information

Author:Ihar Lobach
Publication Year:2023
ISBN:9783031232725
Language:English
File Size:16
Format:PDF
Price:FREE
Download Free PDF

Safe & Secure Download - No registration required

Why Choose PDFdrive for Your Free Statistical Properties of Undulator Radiation: Classical and Quantum Effects (Springer Theses) Download?

  • 100% Free: No hidden fees or subscriptions required for one book every day.
  • No Registration: Immediate access is available without creating accounts for one book every day.
  • Safe and Secure: Clean downloads without malware or viruses
  • Multiple Formats: PDF, MOBI, Mpub,... optimized for all devices
  • Educational Resource: Supporting knowledge sharing and learning

Frequently Asked Questions

Is it really free to download Statistical Properties of Undulator Radiation: Classical and Quantum Effects (Springer Theses) PDF?

Yes, on https://PDFdrive.to you can download Statistical Properties of Undulator Radiation: Classical and Quantum Effects (Springer Theses) by Ihar Lobach completely free. We don't require any payment, subscription, or registration to access this PDF file. For 3 books every day.

How can I read Statistical Properties of Undulator Radiation: Classical and Quantum Effects (Springer Theses) on my mobile device?

After downloading Statistical Properties of Undulator Radiation: Classical and Quantum Effects (Springer Theses) PDF, you can open it with any PDF reader app on your phone or tablet. We recommend using Adobe Acrobat Reader, Apple Books, or Google Play Books for the best reading experience.

Is this the full version of Statistical Properties of Undulator Radiation: Classical and Quantum Effects (Springer Theses)?

Yes, this is the complete PDF version of Statistical Properties of Undulator Radiation: Classical and Quantum Effects (Springer Theses) by Ihar Lobach. You will be able to read the entire content as in the printed version without missing any pages.

Is it legal to download Statistical Properties of Undulator Radiation: Classical and Quantum Effects (Springer Theses) PDF for free?

https://PDFdrive.to provides links to free educational resources available online. We do not store any files on our servers. Please be aware of copyright laws in your country before downloading.

The materials shared are intended for research, educational, and personal use in accordance with fair use principles.