<--- Back to Details
First PageDocument Content
Physics / Qubit / Bell state / Quantum key distribution / Quantum cryptography / Greenberger–Horne–Zeilinger state / Quantum teleportation / Superdense coding / Quantum information science / Theoretical computer science / Quantum mechanics
Date: 2007-10-26 01:00:00
Physics
Qubit
Bell state
Quantum key distribution
Quantum cryptography
Greenberger–Horne–Zeilinger state
Quantum teleportation
Superdense coding
Quantum information science
Theoretical computer science
Quantum mechanics

Vulnerabilities in Quantum Key Distribution Protocols D. Richard Kuhn [removed] National Institute of Standards and Technology Abstract. Recently proposed quantum key distribution protocols are shown to be vulnerable

Add to Reading List

Source URL: csrc.nist.gov

Download Document from Source Website

File Size: 26,78 KB

Share Document on Facebook

Similar Documents

CS378, MA375T, PHY341  Homework 1 Homework 1 Introduction to Quantum Information Science

CS378, MA375T, PHY341 Homework 1 Homework 1 Introduction to Quantum Information Science

DocID: 1xVZC - View Document

CS378, MA375T, PHY341  Homework 2 Homework 2 Introduction to Quantum Information Science

CS378, MA375T, PHY341 Homework 2 Homework 2 Introduction to Quantum Information Science

DocID: 1xVYW - View Document

CS378, MA375T, PHY341  Homework 9 Homework 9 Introduction to Quantum Information Science

CS378, MA375T, PHY341 Homework 9 Homework 9 Introduction to Quantum Information Science

DocID: 1xVwY - View Document

CS378, MA375T, PHY341  Homework 4 Homework 4 Introduction to Quantum Information Science

CS378, MA375T, PHY341 Homework 4 Homework 4 Introduction to Quantum Information Science

DocID: 1xVe2 - View Document

CS378, MA375T, PHY341  Homework 6 Homework 6 Introduction to Quantum Information Science

CS378, MA375T, PHY341 Homework 6 Homework 6 Introduction to Quantum Information Science

DocID: 1xUVZ - View Document