Information Metamaterials at Meripustak

Information Metamaterials

Books from same Author: Tie Jun Cui And Shuo Liu

Books from same Publisher: Cambridge University Press

Related Category: Author List / Publisher List


  • Retail Price: ₹ 1984/- [ 3.00% off ]

    Seller Price: ₹ 1924

Sold By: T K Pandey      Click for Bulk Order

Offer 1: Get ₹ 111 extra discount on minimum ₹ 500 [Use Code: Bharat]

Offer 2: Get 3.00 % + Flat ₹ 100 discount on shopping of ₹ 1500 [Use Code: IND100]

Offer 3: Get 3.00 % + Flat ₹ 300 discount on shopping of ₹ 5000 [Use Code: MPSTK300]

Free Shipping (for orders above ₹ 499) *T&C apply.

In Stock

Free Shipping Available



Click for International Orders
  • Provide Fastest Delivery

  • 100% Original Guaranteed
  • General Information  
    Author(s)Tie Jun Cui And Shuo Liu
    PublisherCambridge University Press
    Edition1st Edition
    ISBN9781108958011
    Pages128
    BindingSoftcover
    LanguageEnglish
    Publish YearFebruary 2021

    Description

    Cambridge University Press Information Metamaterials by Tie Jun Cui And Shuo Liu

    Metamaterials have attracted enormous interests from both physics and engineering communities in the past 20 years, owing to their powerful ability in manipulating electromagnetic waves. However, the functionalities of traditional metamaterials are fixed at the time of fabrication. To control the EM waves dynamically, active components are introduced to the meta-atoms, yielding active metamaterials. Recently, a special kind of active metamaterials, digital coding and programmable metamaterials, are proposed, which can achieve dynamically controllable functionalities using field programmable gate array (FPGA). Most importantly, the digital coding representations of metamaterials set up a bridge between the digital world and physical world, and allow metamaterials to process digital information directly, leading to information metamaterials. In this Element, we review the evolution of information metamaterials, mainly focusing on their basic concepts, design principles, fabrication techniques, experimental measurement and potential applications. Future developments of information metamaterials are also envisioned.