<--- Back to Details
First PageDocument Content
Quantum information science / Quantum mechanics / Theoretical computer science / Physics / Superdense coding / Quantum teleportation / Qubit / Bell state / Quantum entanglement / GreenbergerHorneZeilinger state / Controlled NOT gate / W state
Date: 2018-10-17 18:15:14
Quantum information science
Quantum mechanics
Theoretical computer science
Physics
Superdense coding
Quantum teleportation
Qubit
Bell state
Quantum entanglement
GreenbergerHorneZeilinger state
Controlled NOT gate
W state

Lecture 10, Thurs Feb 16: Teleportation, Entanglement Swapping, GHZ, Monogamy Next let’s see... Quantum Teleportation which is a result from 1991 that came as a great surprise. Science journalists still love it given i

Add to Reading List

Source URL: www.scottaaronson.com

Download Document from Source Website

File Size: 329,40 KB

Share Document on Facebook

Similar Documents

Lecture 9: Tues Feb 14: Superdense Coding OK, now on to some new stuff! Superdense Coding is the first protocol we’ll see that requires entanglement. Basic information theory (Shannon) tells us that “by sending bits,

Lecture 9: Tues Feb 14: Superdense Coding OK, now on to some new stuff! Superdense Coding is the first protocol we’ll see that requires entanglement. Basic information theory (Shannon) tells us that “by sending bits,

DocID: 1xVqR - View Document

1  Ph 219a/CS 219a Exercises Due: Wednesday 6 November[removed]The price of quantum state encryption

1 Ph 219a/CS 219a Exercises Due: Wednesday 6 November[removed]The price of quantum state encryption

DocID: yYKo - View Document

C/CS/Phys 191  Unitary Evolution, No Cloning Theorem, Superdense Coding[removed]Fall 2003

C/CS/Phys 191 Unitary Evolution, No Cloning Theorem, Superdense Coding[removed]Fall 2003

DocID: y0ti - View Document

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

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

DocID: vWyq - View Document

ENTANGLED QUANTUM DYNAMICS Matthew Leifer School of Mathematics

ENTANGLED QUANTUM DYNAMICS Matthew Leifer School of Mathematics

DocID: emHx - View Document