ebook img

A Short Course in Quantum Information Theory: An Approach From Theoretical Physics PDF

178 Pages·2011·1.197 MB·English
Save to my drive
Quick download
Download

Download A Short Course in Quantum Information Theory: An Approach From Theoretical Physics PDF Free - Full Version

by Lajos Diosi (auth.)| 2011| 178 pages| 1.197| English

About A Short Course in Quantum Information Theory: An Approach From Theoretical Physics

This short and concise primer takes the vantage point of theoretical physics and the unity of physics. It sets out to strip the burgeoning field of quantum information science to its basics by linking it to universal concepts in physics. An extensive lecture rather than a comprehensive textbook, this volume is based on courses delivered over several years to advanced undergraduate and beginning graduate students, but essentially it addresses anyone with a working knowledge of basic quantum physics. Readers will find these lectures a most adequate entry point for theoretical studies in this field. For the second edition, the authors has succeeded in adding many new topics while sticking to the conciseness of the overall approach. A new chapter on qubit thermodynamics has been added, while new sections and subsections have been incorporated in various chapter to deal with weak and time-continuous measurements, period-finding quantum algorithms and quantum error corrections. From the reviews of the first edition: "The best things about this book are its brevity and clarity. In around 100 pages it provides a tutorial introduction to quantum information theory, including problems and solutions. … it’s worth a look if you want to quickly get up to speed with the language and central concepts of quantum information theory, including the background classical information theory." (Craig Savage, Australian Physics, Vol. 44 (2), 2007)

Detailed Information

Author:Lajos Diosi (auth.)
Publication Year:2011
ISBN:9783642161162
Pages:178
Language:English
File Size:1.197
Format:PDF
Price:FREE
Download Free PDF

Safe & Secure Download - No registration required

Why Choose PDFdrive for Your Free A Short Course in Quantum Information Theory: An Approach From Theoretical Physics 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 A Short Course in Quantum Information Theory: An Approach From Theoretical Physics PDF?

Yes, on https://PDFdrive.to you can download A Short Course in Quantum Information Theory: An Approach From Theoretical Physics by Lajos Diosi (auth.) 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 A Short Course in Quantum Information Theory: An Approach From Theoretical Physics on my mobile device?

After downloading A Short Course in Quantum Information Theory: An Approach From Theoretical Physics 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 A Short Course in Quantum Information Theory: An Approach From Theoretical Physics?

Yes, this is the complete PDF version of A Short Course in Quantum Information Theory: An Approach From Theoretical Physics by Lajos Diosi (auth.). You will be able to read the entire content as in the printed version without missing any pages.

Is it legal to download A Short Course in Quantum Information Theory: An Approach From Theoretical Physics 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.