Showing posts with label cloak. Show all posts
Showing posts with label cloak. Show all posts

2012-01-26

Invisibility Cloak Breakthrough: Scientists Cloak 3-D Objects

Scientists create first free-standing 3D cloak


Researchers in the US have, for the first time, cloaked a three-dimensional object standing in free space, bringing the much-talked-about invisibility cloak one step closer to reality.
[...]

Published today, 26 January, in the Institute of Physics and German Physical Society’s New Journal of Physics, the researchers used a method known as “plasmonic cloaking” to hide an 18-centimetre cylindrical tube from microwaves.

Invisibility's Next Frontier: Scientists Cloak 3-D Objects | Danger Room | Wired.com

Sure, researchers have already made marked strides toward making objects unseeable. But much of the work was more like mimicry: Meta-materials that bent light around an object to conceal it, but only worked in two dimensions. Or a device that played tricks on the eye, by harnessing the mirage effect to make objects behind it “disappear.”

Now, a team of researchers have taken an incredible leap forward. They’ve successfully made a 3-D object disappear.

Metamaterial cloaking - Wikipedia, the free encyclopedia

Metamaterial cloaking is the scientific application of metamaterials in order to achieve invisibility-cloaking. This is accomplished by manipulating the paths traversed by light through a novel optical material. Metamaterials direct and control the propagation and transmission of specified parts of the light spectrum and demonstrate the potential to render an object seemingly invisible. Metamaterial cloaking, based on transformation optics, describes the process of shielding something from view by controlling electromagnetic radiation. Objects in the defined location are still present, but incident waves are guided around them without being affected by the object itself.[1][2][3][4][5]

Scientists make 'invisibility cloak' breakthrough - Telegraph

Those hoping for a Harry Potter-style touch of wizardry will be disappointed however. To the human eye, which can only perceive light in higher frequencies, there would have been no invisibility.
But, say the researchers, the experiment is important proof of a principle that so-called plasmonic meta-materials can achieve a cloaking effect.
A warplane cloaked with such materials could achieve "super-stealth" status by becoming invisible in all directions to radar microwaves, said co-lead investigator Andrea Alu.

Researchers cloak free-standing 3D object using plasmonic metamaterials


To cloak an 18 cm (7 in) long, 2.5 cm (0.9 in) diameter cylindrical tube from microwaves, the team shelled it in a plasmonic metamaterial. The team says the cloak hid the 3D object for all angles of incidence and observation. They tested it by directing microwaves towards the cloaked cylinder and mapping the resulting scattering both around the object and in the far-field. The cloak worked best when the microwaves were at a frequency of 3.1 GHz, reducing the scattering of polarized microwaves by more than 9 dB for a 60-degree range of angles.
But the team says demonstrating the cloaking on a 3D object using visible light is their key challenge.
"In principle, this technique could be used to cloak light; in fact, some plasmonic materials are naturally available at optical frequencies. However, the size of the objects that can be efficiently cloaked with this method scales with the wavelength of operation, so when applied to optical frequencies we may be able to efficiently stop the scattering of micrometre-sized objects," said Professor Alù.


2010-08-15

Invisibility Cloak of Silk and Gold

Scientists Finally Make 'Invisibility Cloak' With Silk

A scientist at Tufts University alongwith some colleagues from the Boston University has finally created an "Invisibilty Cloak" and that too from silk and coated in gold.

This new material only works on long terahertz waves but some scientists who took part in the development of the metamaterial think that the cloak will also work in much smaller wavelengths.


Discovery News 

Invisibility Cloak Made From Silk

Is a silk invisibility cloak in our future? For now a silk invisibility cloak works only on relatively long terahertz waves.

Invisibility cloaks, along with their optically exotic cousins, perfect absorbers and perfect reflectors and others, belong to a special class of materials known as metamaterials. Unlike most materials, which derive optical properties like color from their chemical make up, metamaterials derive their properties from the physical structure.

A curly cue, or short spiral, is a common  metamaterial structure. Scientists call them split ring resonators, or SSRs. Usually scrawled into metals, SSR can give ordinary materials extraordinary abilities, like absorbing or reflecting all the specific wavelengths of light, or bending a wavelength around an object.

To create their silk-based metamaterial, the Tufts and Boston University scientists, including Richard Averitt, started with a one-centimeter-square piece of silkworm silk. (In another recent paper, Omenetto's colleague and another co-author of the Advanced Material's paper, David Kaplan of Tufts, created silk-producing bacteria.) Onto that tiny piece of dielectric silk they stenciled 10,000 gold resonators.

The potential applications of silk-based invisibility are huge. Omenetto and his colleagues at Tufts aren't even focused on Harry Potter or Star Trek-style invisibility materials, although he says that is one potential application.

Their main focus is in biomedical applications. [...]


Silk-based invisibility would also allow doctors and radiologists to cloak various organs or tissues and see through them, said Omenetto, getting a better image of the organs or tissues usually hidden behind.


 

Implantable silk metamaterials could advance biomedicine, biosensing

In Situ Bio-Sensing

To demonstrate the concept, the researchers conducted a series of in vitro experiments that examined the electromagnetic response of the silk metamaterials when implanted under thin slices of muscle tissue. They found that the metamaterials retained their novel resonance properties while implanted. The same process could be readily adapted to fabricate silk metamaterials at other frequencies, according to Tao.

"Our approach offers great promise for applications such as in situ bio-sensing with implanted medical devices and the transmission of medical information from within the human body," says Omenetto. "Imagine the benefits of monitoring the rate of drug delivery from a drug-eluting cardiac stent, making a perfect absorber that can be implanted to attack diseased tissue by heat, or wrapping an 'invisibility cloak' around an organ to examine the tissue behind it."



Tufts University

Implantable Silk Metamaterials Could Advance Biomedicine, Biosensing



Below, silk-based metamaterial photographed on a background of silk fibers. The tiny, flexible devices can be rolled into capsule-like shapes (above). (Credit: Hu Tao, Tufts University)




Sources
Scientists Finally Make 'Invisibility Cloak' With Silk
http://www.allvoices.com/contributed-news/6516985-scientists-finally-make-invisibility-cloak-with-silk
Invisibility Cloak Made From Silk : Discovery News
http://news.discovery.com/tech/silk-invisibility-cloak.html
Implantable silk metamaterials could advance biomedicine, biosensing
http://www.sciencedaily.com/releases/2010/08/100812135938.htm
Implantable Silk Metamaterials Could - Tufts University
http://news.tufts.edu/releases/release.php?id=198

Related
home
http://ase.tufts.edu/biomedical/unolab/home.html
silk optics
http://ase.tufts.edu/biomedical/unolab/silk_optics.html
Behind the Secrets of - Tufts University
http://news.tufts.edu/releases/release.php?id=191
Implantable Silk Metamaterials Could Advance Biomedicine, Biosensing | Before It's News
http://beforeitsnews.com/story/136/463/Implantable_Silk_Metamaterials_Could_Advance_Biomedicine,_Biosensing.html
Richard Averitt (Boston University, Physics Department)
http://physics.bu.edu/people/show/raveritt


2009-11-24

Metamaterials To Develop Invisibility Cloaks

clipped from www.asylum.com
Scientists Working on Invisibility Cloak
Invisibilty cloak could make your head invisible


The Imperial College of London and the University of Southampton have been awarded a £4.9 million grant from the Leverhulme Trust to further research "metamaterials" that could hopefully bend light away as it reflects from the surface, tricking the human eye into believing an item made of metamaterials is not there. To create the materials, scientists have to alter the structure of an already existing material using complex nanopatterns. In other words, eerily floating chess pieces for everyone!
clipped from www.dailymail.co.uk
Mail Online

We may be seeing Harry Potter's invisibility suit sooner than we think...

Fiction made real? Harry Potter tries out his own invisible cloak in the 'Goblet of Fire'

Fiction made real? Harry Potter goes invisible in the 'Goblet of Fire'

A photo of 'meta-material', which can deflect microwave beams so they flow around a 'hidden' object

A photo of 'meta-material', which can deflect microwave beams so they flow around a 'hidden' object

clipped from www3.imperial.ac.uk
Imperial College London
Artist's impression of a metamaterial

£4.9 million to develop metamaterials for 'invisibility cloaks' and 'perfect lenses'

Imperial receives major new funding grant from The Leverhulme Trust - News Release

The new grant is one of two The Leverhulme Trust is awarding for 'embedding emerging disciplines'. The project team is led by two of Imperial College London's Professors: Professor Sir John Pendry, a world-leading physicist and pioneer in the field, who first proposed that metamaterials could be used to build an invisibility 'cloak' in 2006, and Professor Stefan Maier who is a leading experimentalist in the field of plasmonics. Also collaborating in the project is Professor Nikolay Zheludev's team at the University of Southampton.



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clipped from physics.aps.org
APS physics

Taking the wraps off cloaking

(Top) A hot desert surface causes a refractive index gradient in the air above, causing rays of light to be refracted continuously to form a reflection in the road and hence the appearance of water. (Bottom) Similarly, a graded refractive index cloak can guide light around a hidden object so that an observer sees only that which is behind the cloak.
Illustration: Top: www.dreamstime.com; Bottom: Pendry et al. [7]
(Top left) A ray of light in free space travels in a straight line. The undistorted coordinate system is shown. (Top right) The coordinates are transformed to exclude the cloaked region. Trajectories of rays are pinned to the coordinate mesh and therefore avoid the cloaked region, returning to their original path after traversing the cloak. (Bottom) In contrast, this cloaking scheme operates by cancelling scattering due to the hidden object. Here we show a high-refractive-index sphere hidden by
A ray of light in free space travels in a straight line. The undistorted coordinate system is shown. (Top right) The coordinates are transformed to exclude the cloaked region. Trajectories of rays are pinned to the coordinate mesh and therefore avoid the cloaked region, returning to their original path after traversing the cloak.
(Top left) The first implementation of a cloak: resonant elements, shown inset, are incorporated in a metamaterial and tuned to give a magnetic response graded from the inner to outer radius. Dimensions are shown in mm. The cloak is designed to operate at $8.5\ \textrm{GHz}$. (Bottom left) A proposed design for an optical version of the cloak, incorporating metal wires in a dielectric host and designed to operate at $632.8\ \textrm{nm}$ in a cloak approximately 4 microns in diameter. The latter
Illustration: Top left: Schurig et al. [11]; bottom left: Smolyaninov et al. [21]; top and bottom right: Valentine et al. [19]
(Left) Schematic view of the acoustic cloaking shell consisting of two different materials of the same thicknesses arranged in a cylindrical multilayered structure. (Right) Pressure map for a planar wave incident on a multilayer structure comprising 200 layers.
Illustration: Torrent and Sánchez-Dehesa [28]

Figure 5: (Left) Schematic view of the acoustic cloaking shell consisting of two different materials of the same thicknesses arranged in a cylindrical multilayered structure. (Right) Pressure map for a planar wave incident on a multilayer structure comprising 200 layers.

clipped from www.dailymotion.com

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Sources:
  1. Scientists Working on Invisibility Cloak - Asylum.com
  2. We may be seeing Harry Potter's invisibility suit sooner than we think | Mail Online
  3. £4.9 million to develop metamaterials for 'invisibility cloaks' and 'perfect lenses'
  4. Physics - Taking the wraps off cloaking
  5. Dailymotion - LECTURE: John Pendry - "Invisibility Cloak" - a Tech & Science video
Related:
  1. Science Museum | Antenna Science News | First 'invisibility cloak' appears
  2. Harry Potter-style invisibility cloak could be created after £4.9m grant - Telegraph
  3. 'Invisibility Cloaks' and 'Perfect Lenses' One Step Closer - Group receives millions of euros for metamaterial research - Softpedia
  4. BBC NEWS | Science & Environment | Invisibility cloak edges closer
  5. BBC NEWS | Science/Nature | Experts test cloaking technology
  6. Here’s how to make an invisibility cloak - Science- msnbc.com

2008-08-11

New Metamaterials Promise Invisibility Cloaks


Metamaterials


Clipped from: Metamaterials Hold Promise For Invisibility Cloaks -- Metamaterials -- InformationWeek

Information Week

Metamaterials Hold Promise For Invisibility Cloaks


Researchers at the University of California, Berkeley, say they have created materials that bring them closer to creating invisibility cloaks.

They will publish their work in two journals, Nature and Science, this week. The researchers used 3-D metmaterials, or composites with the ability to bend electromagnetic waves, to negatively refract light

Negative refraction

Clipped from: Professor Xiang Zhang's Research Lab - UC Berkeley: Home



Invisibility


Clipped from: Invisibility cloak a step closer as scientists bend light 'the wrong way' | Mail Online

Mail Online

Invisibility cloak a step closer as scientists bend light 'the wrong way'


The discoveries could one day allow people to become invisible
Research

Clipped from: Professor Xiang Zhang's Research Lab - UC Berkeley: Home




Negative Refraction New Breakthroughs! read the story



Related:
Professor Xiang Zhang's Research Lab - UC Berkeley: Home
Professor Xiang Zhang's Research Lab: Research
Invisibility cloak a step closer as scientists bend light 'the wrong way' | Mail Online
Invisibility Cloak One Step Closer: New Metamaterials Bend Light Backwards
Metamaterials Hold Promise For Invisibility Cloaks -- Metamaterials -- InformationWeek
New Material Could Make Objects Invisible | LiveScience
Invisible Cloak Using Metamaterials
AFP: Invisibility cloak now within sight: scientists
Scientists closer to developing invisibility cloak - USATODAY.com

2007-12-22

Harry Potter's Invisibility Cloak Becomes Reality

clipped from news.sawf.org
clipped from www.eng.umd.edu
Newsroom
Team Introduces World's First Invisibility Cloak
Christopher Davis and Igor Smolyaninov

A Clark School research team comprised of Visiting Research Scientist Igor Smolyaninov, Professor of Electrical and Computer Engineering Christopher Davis, and graduate student Yu-Ju Hung, has created the world's first true invisibility cloak.

The new cloak is just 10 micrometers in diameter; by comparison, a human hair is between 50 to 100 micrometers wide. The cloak works by guiding rays of light around an object hidden inside and releasing the light rays on the other side. This causes the light waves to appear to have moved in a straight line, making the cloak and the object inside of it invisible.

The team's research has been covered by the media, including New Scientist, and a manuscript describing the research is available online at http://arxiv.org/abs/0709.2862. The research was also included in Discover Magazine's Top 100 science stories of 2007.

View a press release about this technology online.

December 18, 2007


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Related:
2-D Invisibility Cloak Created
Researchers develop 2-D invisibility cloak
Harry Potter's invisibility cloak becomes a reality
A. James Clark School of Engineering :: Clark School Researchers Develop Two-Dimensional Invisibility Cloak