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Progress on Very/Ultra Low Frequency Mechanical Antennas
Progress on Very/Ultra Low Frequency Mechanical Antennas

Isolated dual‐band meander line antenna loaded with U‐slot and modified  CSRR for WLAN applications - Deepak - 2016 - Microwave and Optical  Technology Letters - Wiley Online Library
Isolated dual‐band meander line antenna loaded with U‐slot and modified CSRR for WLAN applications - Deepak - 2016 - Microwave and Optical Technology Letters - Wiley Online Library

Fundamental limits to optical response in absorptive systems
Fundamental limits to optical response in absorptive systems

Bounding the performance limitations of small antennas — Taking a  new look at an old problem and interpreting the kno
Bounding the performance limitations of small antennas — Taking a new look at an old problem and interpreting the kno

Fundamental Efficiency Limits for Small Metallic Antennas
Fundamental Efficiency Limits for Small Metallic Antennas

Going Beyond Chu Harrington Limit: ULF Radiation with a Spinning Magnet  Array Abstract 1 Introduction 2 Theory
Going Beyond Chu Harrington Limit: ULF Radiation with a Spinning Magnet Array Abstract 1 Introduction 2 Theory

Design for RF efficiency
Design for RF efficiency

Quantum-Limited Atomic Receiver in the Electrically Small Regime – arXiv  Vanity
Quantum-Limited Atomic Receiver in the Electrically Small Regime – arXiv Vanity

arXiv:1805.09808v2 [physics.atom-ph] 19 Jun 2018
arXiv:1805.09808v2 [physics.atom-ph] 19 Jun 2018

PDF) Fundamental limits on antenna size: a new limit
PDF) Fundamental limits on antenna size: a new limit

PDF] Going beyond Chu harrington limit: ULF radiation with a spinning  magnet array | Semantic Scholar
PDF] Going beyond Chu harrington limit: ULF radiation with a spinning magnet array | Semantic Scholar

a) HERE Schematics of a circular wire array; a set of vertically... |  Download Scientific Diagram
a) HERE Schematics of a circular wire array; a set of vertically... | Download Scientific Diagram

At and below the Chu limit: passive and active broad bandwidth  metamaterial-based electrically small antennas
At and below the Chu limit: passive and active broad bandwidth metamaterial-based electrically small antennas

Design for RF efficiency
Design for RF efficiency

Design for RF efficiency
Design for RF efficiency

Physical Bounds of Antennas | SpringerLink
Physical Bounds of Antennas | SpringerLink

At and below the Chu limit: passive and active broad bandwidth  metamaterial-based electrically small antennas
At and below the Chu limit: passive and active broad bandwidth metamaterial-based electrically small antennas

History of UWB Antennas
History of UWB Antennas

Analytical Formulation for Loop Antennas Valid from the RF to Optical  Regime: A Review Abstract 1. Introduction 2. Theory of Unl
Analytical Formulation for Loop Antennas Valid from the RF to Optical Regime: A Review Abstract 1. Introduction 2. Theory of Unl

Progress on Very/Ultra Low Frequency Mechanical Antennas
Progress on Very/Ultra Low Frequency Mechanical Antennas

AALTO UNIVERSITY School of Electrical Engineering Akshay Sridharan  DETERMINATION OF Q OF SMALL ANTENNAS Thesis submitted for ex
AALTO UNIVERSITY School of Electrical Engineering Akshay Sridharan DETERMINATION OF Q OF SMALL ANTENNAS Thesis submitted for ex

朱兰成- 维基百科,自由的百科全书
朱兰成- 维基百科,自由的百科全书

Volumetric metamaterials versus impedance surfaces in scattering  applications | Scientific Reports
Volumetric metamaterials versus impedance surfaces in scattering applications | Scientific Reports

At and below the Chu limit: passive and active broad bandwidth  metamaterial-based electrically small antennas
At and below the Chu limit: passive and active broad bandwidth metamaterial-based electrically small antennas

Design Concerns for In-body Antennas Based on Frequency Analysis of  Fundamental Radiation Limitations
Design Concerns for In-body Antennas Based on Frequency Analysis of Fundamental Radiation Limitations

At and below the Chu limit: passive and active broad bandwidth  metamaterial-based electrically small antennas
At and below the Chu limit: passive and active broad bandwidth metamaterial-based electrically small antennas