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generalized transformation optics of linear materials

generalized transformation optics of linear materials

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(PDF) Generalized Transformation Optics of Linear Materials

to transformation optics in linear dielectric materials begun in a pre vious paper.This approach,This approach,which generalizes the Plebanski based approach,is systematic ally applicable for allAuthor Robert T.Thompson,Steven A.Cummer,Jörg Frauendiener,Jörg FrauendienerPublish Year 201012345Next[1006.3364] Generalized Transformation Optics of Linear Jun 17,2010·Abstract We continue the development of a manifestly 4-dimensional,completely covariant,approach to transformation optics in linear dielectric materials begun in a previous paper.This approach,which generalizes the Plebanski based approach,is systematically applicable for all transformations and all general linear materials.Author Robert T.Thompson,Steven A.Cummer,Jörg Frauendiener,Jörg FrauendienerPublish Year 2010Generalized transformation optics of linear materials May 01,2011·This approach,which generalizes the Plebanski based approach,is systematically applicable for all transformations and all general linear materials.Importantly,it enables useful applications such as arbitrary relative motion,transformations from arbitrary non-vacuum initial dielectric media,and arbitrary space-times.

Cited by 22Publish Year 2011Author Robert T Thompson,Steven A Cummer,Jörg Frauendiener,Jörg FrauendienerImages of Generalized Transformation optics of Linear Materi

advancesengCompact sorting of optical vortices by means of diffractive transformation optics - Advances in researchgate.netBroadband ENZ plasmonic photocatalysis general idea and sample Download Scientific Diagramresearchgate.netThree-dimensional perfect cloak defined by equation (2) with the linear Download Scientific researchgate.netThe transformation-optics high-resolution metalens.a) The relative Download Scientific Diagram imagesGeneralized Transformation Optics of Linear Materials - COREThis approach,which generalizes the Plebanski based approach,is systematically applicable for all transformations and all general linear materials.Importantly,it enables useful applications such as arbitrary relative motion,transformations from arbitraryCloaking Devices,Electromagnetic Wormholes,and (2011) Invisibility cloaking via non-smooth transformation optics and ray tracing.Physics Letters A 375 :18,1903-1911.(2011) Generalized transformation optics of linear materials.Controlling the wave propagation through theKeywords wave control,transformation optics,maxwell equations,linear coordinate transformation 1.Introduction In traditional wave optics,optical design is largely a matter of choosing the interface between two materials.For example,the lens of a camera is optimized by altering its shape so as to European Journal of Physics

Frequency conversion by exploiting time in

Generalized transformation optics of linear materials Robert T Thompson,Steven A Cummer and Jörg Frauendiener-A completely covariant approach to transformation optics Robert T Thompson,S A Cummer and J Frauendiener-Material parameters and vector scaling in transformation acoustics Steven A Cummer,Marco Rahm and David Schurig-Recent citationsGeneralized Transformation Optics of Linear Materials -Generalized Transformation Optics of Linear Materials .By Robert T.Thompson, approach to transformation optics in linear dielectric materials begun in a previous paper.This approach,which generalizes the Plebanski based approach,is systematically applicable for all transformations and all general linear materials.Importantly,it Generalized field-transforming metamaterials - IOPscienceNov 27,2008·In this paper,we introduce a generalized concept of field-transforming metamaterials,which perform field transformations defined as linear relations between the original and transformed fields.These artificial media change the fields in a prescribed fashion in

Generalized field-transforming metamaterials

Generalized field-transforming metamaterials which perform eld transformations dened as linear relations between the original and transformed elds.These articial The concept of transformation optics,which is based on nding articial materials that createGeneralized laws of reflection and refraction from Aug 28,2012·Based on transformation optics,we introduce another set of generalized laws of reflection and refraction (different from that of Yu N.et al.,Science,334 (2011) 333),through which a transformation media slab is derived as a meta-surface,producing anomalous reflection and refraction for all polarizations of incident light.For easy Generalized transformation optics from triple spacetime In this paper,various extensions of the design strategy for transformation media are proposed.We show that it is possible to assign different transformed spaces to the field strength tensor (electric field and magnetic induction) and to the excitation tensor (displacement field and magnetic field),respectively.In this way,several limitations of standard transformation media can be overcome.

Generalized transformation optics from triple

Generalized transformation optics from triple to symmetry transformations,as those are by denition linear transformations that map a solution of the equations of motion onto another one.Therefore it A transformation material follows from a symmetry transforma-Generalized transformation optics from tripleGeneralized transformation optics from triple spacetime metamaterials long as the linear transformations are seen as transfor-mations of spacetime (rather than of the elds) this re- Obviously,the concept of transformation materials as sketched above is related to symmetry transformations,Generalized transformation optics of linear materialsto transformation optics in linear dielectric materials begun in a previous paper.This approach,which generalizes the Plebanski based approach,is systematically applicable for all transformations and all general linear materials.Importantly,it enables useful applications such

Journal of Optics (United Kingdom) [email protected]

Journal of Optics (United Kingdom) Publication Venue For Non-linear transformation opticsThe concept of transformation optics is extended to non-linear media.It is shown that transformation optics can be generalized to include arbitrary non-linear response.In a systematic expansion,trans-formation optics favors implicit constitutive relations in terms of energy densities D E and B H rather than E 2and H .As an example,the Kerr OSA Generalized compensated bilayer structure from the A systematic study on a generalized compensated bilayer structure is presented based on transformation optics.A compensated bilayer can be constructed through a general transformation plus a coordinate inversion based on a single layer in the electromagnetic (EM) space.Two outer boundaries of the obtained bilayer are mapped from the same surface.

OSA Generalized compensated bilayer structure from the

A systematic study on a generalized compensated bilayer structure is presented based on transformation optics.A compensated bilayer can be constructed through a general transformation plus a coordinate inversion based on a single layer in the electromagnetic (EM) space.Two outer boundaries of the obtained bilayer are mapped from the same surface.OSA Ray optics of generalized lensesWe study the ray optics of generalized lenses (glenses),which are ideal thin lenses generalized to have different object- and image-sided focal lengths,and the most general light-ray-direction-changing surfaces that stigmatically image any point in object space to a corresponding point in image space.Gabor superlenses [UK patent541,753 (1940); J.Opt.A1,94 (1999)JOAOF81464-425810.1088 On spacetime transformation optics temporal andGeneralized transformation optics of linear materials Robert T Thompson,Steven A Cummer and Jörg Frauendiener Anisotropic singularities in chiral modified gravity Yannick Herfray,Kirill Krasnov and Yuri Shtanov Black hole nonmodal linear stability the Schwarzschild (A)dS cases Gustavo Dotti Electromagnetic fields with vanishing scalar

Potential relativistic dispersion in material medium

Jan 01,2016·Lorentz space-time transformation has been applied to the phase factor of a plane electromagnetic wave in linear material medium.The derivation shows in the limiting case for v = c,the phase velocity converges to its monochromatic value implying no such dispersion effect can exist in free space.However in linear material medium,wave speed may exceed the monochromatic phaseRobert T Thompson's articles on arXivPrepared for a special issue on transformation optics published by Journal of Optics Journal-ref Journal of Optics 13,024008 (2011) Subjects Optics (physics.optics)Robert THOMPSON Lead Scientist PhD Booz Allen Generalized Transformation Optics of Linear Materials approach to transformation optics in linear dielectric materials begun in a previous paper. is systematically applicable for all

Robert THOMPSON Lead Scientist PhD Booz Allen

Generalized Transformation Optics of Linear Materials approach to transformation optics in linear dielectric materials begun in a previous paper. is systematically applicable for all Robert Thompson Ph.D.- Visiting Scientist - Imperial Generalized transformation optics of linear materials approach to transformation optics in linear dielectric materials begun in a previous paper. approach to transformation optics in Some results are removed in response to a notice of local law requirement.For more information,please see here.

Some results are removed in response to a notice of local law requirement.For more information,please see here.Previous123456NextGeneralized Transformation Optics of Linear Materials -

Generalized Transformation Optics of Linear Materials .By Robert T.Thompson, approach to transformation optics in linear dielectric materials begun in a previous paper.This approach,which generalizes the Plebanski based approach,is systematically applicable for all transformations and all general linear materials.Importantly,it Special issue on transformation optics - Journal of Optics Since then the concept of 'transformation optics' has been extended into many other branches of physics,including acoustics,elasticity and thermal flow.This special issue contains 26 papers and three review articles that highlight recent advances in the field of transformation optics,from theoretical analysis to experimental realization.Special issue on transformation optics - Journal of Optics Since then the concept of 'transformation optics' has been extended into many other branches of physics,including acoustics,elasticity and thermal flow.This special issue contains 26 papers and three review articles that highlight recent advances in the field of transformation optics,from theoretical analysis to experimental realization.

Title Scientist Theoretical PhysicistLocation Washington D.C.MetroConnections 313Potential relativistic dispersion in material medium

Jan 01,2016·Lorentz space-time transformation has been applied to the phase factor of a plane electromagnetic wave in linear material medium.The derivation shows in the limiting case for v = c,the phase velocity converges to its monochromatic value implying no such dispersion effect can exist in free space.However in linear material medium,wave speed may exceed the monochromatic phaseTransformation optics and metamaterials Nature MaterialsApr 23,2010·Transformation optics describes the capability to design the path of light waves almost at will through the use of metamaterials that control effective materials properties onTransformation optics and metamaterials Nature MaterialsApr 23,2010·Transformation optics describes the capability to design the path of light waves almost at will through the use of metamaterials that control effective materials properties on

[1006.3364] Generalized Transformation Optics of Linear

Jun 17,2010·This approach,which generalizes the Plebanski based approach,is systematically applicable for all transformations and all general linear materials.Importantly,it enables useful applications such as arbitrary relative motion,transformations from arbitrary non-vacuum initial dielectric media,and arbitrary space-times.



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