你好! Shipping to Taiwan with premium packaging for just NT$300 

Ship to
Taiwan
0
  • argentina
  • chile
  • colombia
  • españa
  • méxico
  • perú
  • estados unidos
  • internacional

Select your country

Americas

Europe

Rest of the world

portada A Controlled Phase Gate Between a Single Atom and an Optical Photon
Type
Physical Book
Publisher
Language
English
Pages
72
Format
Paperback
Dimensions
23.4x15.6x0.5 cm
Weight
0.14 kg.
ISBN13
9783319370880

A Controlled Phase Gate Between a Single Atom and an Optical Photon

Andreas Reiserer (Author) · Springer · Paperback

A Controlled Phase Gate Between a Single Atom and an Optical Photon - Reiserer, Andreas

Cheaper New Book Imported to Taiwan
Delivery: 04 Nov - 17 Nov Shipping: 14 to 18 business days.
NT$ 3,359
Faster New Book Imported to Taiwan
Delivery: 22 Oct - 30 Oct Shipping: 5 to 6 business days.
NT$ 4,503
NT$ 3,359

Synopsis "A Controlled Phase Gate Between a Single Atom and an Optical Photon"

This thesis reports on major steps towards the realization of scalable quantum networks. It addresses the experimental implementation of a deterministic interaction mechanism between flying optical photons and a single trapped atom. In particular, it demonstrates the nondestructive detection of an optical photon. To this end, single rubidium atoms are trapped in a three-dimensional optical lattice at the center of an optical cavity in the strong coupling regime. Full control over the atomic state -- its position, its motion, and its electronic state -- is achieved with laser beams applied along the resonator and from the side. When faint laser pulses are reflected from the resonator, the combined atom-photon state acquires a state-dependent phase shift. In a first series of experiments, this is employed to nondestructively detect optical photons by measuring the atomic state after the reflection process. Then, quantum bits are encoded in the polarization of the laser pulse and in the Zeeman state of the atom. The state-dependent phase shift mediates a deterministic universal quantum gate between the atom and one or two successively reflected photons, which is used to generate entangled atom-photon, atom-photon-photon, and photon-photon states out of separable input states.

Customers reviews

Frequently Asked Questions about the Book

All books in our catalog are Original.
The book is written in English.
The binding of this edition is Paperback.

Questions and Answers about the Book

Do you have a question about the book? Login to be able to add your own question.

Opinions about Bookdelivery

More customer reviews