From d47007c2b2e36724ead0f7db66668eedc84aa58d Mon Sep 17 00:00:00 2001 From: =?UTF-8?q?Fabiana=20=F0=9F=9A=80=20=20Campanari?= <113218619+FabianaCampanari@users.noreply.github.com> Date: Mon, 27 Jan 2025 22:09:17 -0300 Subject: [PATCH] Update README.md MIME-Version: 1.0 Content-Type: text/plain; charset=UTF-8 Content-Transfer-Encoding: 8bit Signed-off-by: Fabiana 🚀 Campanari <113218619+FabianaCampanari@users.noreply.github.com> --- README.md | 8 ++++---- 1 file changed, 4 insertions(+), 4 deletions(-) diff --git a/README.md b/README.md index df14727..13dc269 100644 --- a/README.md +++ b/README.md @@ -867,16 +867,16 @@ This repository thrives on collaboration! Whether you're a quantum computing exp 1. [Nielsen, M. A., & Chuang, I. L. (2010)](). *Quantum Computation and Quantum Information*. Cambridge University Press. This book is a comprehensive reference for understanding quantum mechanics, quantum computation, and quantum error correction techniques. -2. Preskill, J. (1998). *Fault-Tolerant Quantum Computation*. Proceedings of the Royal Society of London A, 454(1969), 385–410. +2. [Preskill, J. (1998)](). *Fault-Tolerant Quantum Computation*. Proceedings of the Royal Society of London A, 454(1969), 385–410. This paper explores the theoretical foundation of fault tolerance in quantum systems. -3. Gottesman, D. (1997). *Stabilizer Codes and Quantum Error Correction*. PhD Thesis, California Institute of Technology. +3. [Gottesman, D. (1997)]().. *Stabilizer Codes and Quantum Error Correction*. PhD Thesis, California Institute of Technology. A seminal work introducing the stabilizer formalism, a key framework for many error correction codes. -4. Kitaev, A. Y. (2003). *Fault-Tolerant Quantum Computation by Anyons*. Annals of Physics, 303(1), 2–30. +4. [Kitaev, A. Y. (2003)]().. *Fault-Tolerant Quantum Computation by Anyons*. Annals of Physics, 303(1), 2–30. This work discusses the application of topological quantum codes for error correction. -5. Devitt, S. J., Munro, W. J., & Nemoto, K. (2013). *Quantum Error Correction for Beginners*. Reports on Progress in Physics, 76(7), 076001. +5. [Devitt, S. J., Munro, W. J., & Nemoto, K. (2013)]().. *Quantum Error Correction for Beginners*. Reports on Progress in Physics, 76(7), 076001. A beginner-friendly overview of quantum error correction principles and practical implementations.