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Reliable hp finite element computations of scattering resonances in nano optics
Umeå universitet, Teknisk-naturvetenskapliga fakulteten, Institutionen för matematik och matematisk statistik.ORCID-id: 0000-0002-0143-5554
2019 (Engelska)Doktorsavhandling, sammanläggning (Övrigt vetenskapligt)
Abstract [en]

Eigenfrequencies are commonly studied in wave propagation problems, as they are important in the analysis of closed cavities such as a microwave oven. For open systems, energy leaks into infinity and therefore scattering resonances are used instead of eigenfrequencies. An interesting application where resonances take an important place is in whispering gallery mode resonators.

The objective of the thesis is the reliable and accurate approximation of scattering resonances using high order finite element methods. The discussion focuses on the electromagnetic scattering resonances in metal-dielectric nano-structures using a Drude-Lorentz model for the description of the material properties. A scattering resonance pair satisfies a reduced wave equationand an outgoing wave condition. In this thesis, the outgoing wave condition is replaced by a Dirichlet-to-Neumann map, or a Perfectly Matched Layer. For electromagnetic waves and for acoustic waves, the reduced wave equation is discretized with finite elements. As a result, the scattering resonance problem is transformed into a nonlinear eigenvalue problem.

In addition to the correct approximation of the true resonances, a large number of numerical solutions that are unrelated to the physical problem are also computed in the solution process. A new method based on a volume integral equation is developed to remove these false solutions.

The main results of the thesis are a novel method for removing false solutions of the physical problem, efficient solutions of non-linear eigenvalue problems, and a new a-priori based refinement strategy for high order finite element methods. The overall material in the thesis translates into a reliable and accurate method to compute scattering resonances in physics and engineering.

Ort, förlag, år, upplaga, sidor
Umeå: Umeå Universitet , 2019. , s. 35
Serie
Research report in mathematics, ISSN 1653-0810 ; 67
Nyckelord [en]
Scattering resonances, Helmholtz problems, pseudospectrum, Lippmann-Schwinger equation, finite element methods, nonlinear eigenvalue problems, spurious solutions
Nationell ämneskategori
Beräkningsmatematik
Identifikatorer
URN: urn:nbn:se:umu:diva-159154ISBN: 978-91-7855-076-0 (tryckt)OAI: oai:DiVA.org:umu-159154DiVA, id: diva2:1316711
Disputation
2019-06-13, MA121, MIT-huset, Umeå, 13:00 (Engelska)
Opponent
Handledare
Tillgänglig från: 2019-05-23 Skapad: 2019-05-20 Senast uppdaterad: 2019-05-21Bibliografiskt granskad
Delarbeten
1. On spurious solutions in finite element approximations of resonances in open systems
Öppna denna publikation i ny flik eller fönster >>On spurious solutions in finite element approximations of resonances in open systems
2017 (Engelska)Ingår i: Computers and Mathematics with Applications, ISSN 0898-1221, E-ISSN 1873-7668, Vol. 74, nr 10, s. 2385-2402Artikel i tidskrift (Refereegranskat) Published
Abstract [en]

In this paper, we discuss problems arising when computing resonances with a finite element method. In the pre-asymptotic regime, we detect for the one dimensional case, spurious solutions in finite element computations of resonances when the computational domain is truncated with a perfectly matched layer (PML) as well as with a Dirichlet-to-Neumann map (DtN). The new test is based on the Lippmann–Schwinger equation and we use computations of the pseudospectrum to show that this is a suitable choice. Numerical simulations indicate that the presented test can distinguish between spurious eigenvalues and true eigenvalues also in difficult cases.

Ort, förlag, år, upplaga, sidor
Elsevier, 2017
Nyckelord
Scattering resonances, Lippmann–Schwinger equation, Nonlinear eigenvalue problems, Acoustic resonator, Dielectric resonator, Bragg resonator
Nationell ämneskategori
Beräkningsmatematik
Forskningsämne
matematik
Identifikatorer
urn:nbn:se:umu:diva-138096 (URN)10.1016/j.camwa.2017.07.020 (DOI)000415908400013 ()2-s2.0-85026531962 (Scopus ID)
Forskningsfinansiär
Vetenskapsrådet, 621-2012-3863
Tillgänglig från: 2017-08-09 Skapad: 2017-08-09 Senast uppdaterad: 2023-03-23Bibliografiskt granskad
2. Efficient resonance computations for Helmholtz problems based on a Dirichlet-to-Neumann map
Öppna denna publikation i ny flik eller fönster >>Efficient resonance computations for Helmholtz problems based on a Dirichlet-to-Neumann map
2018 (Engelska)Ingår i: Journal of Computational and Applied Mathematics, ISSN 0377-0427, E-ISSN 1879-1778, Vol. 330, s. 177-192Artikel i tidskrift (Refereegranskat) Published
Abstract [en]

We present an efficient procedure for computing resonances and resonant modes of Helmholtz problems posed in exterior domains. The problem is formulated as a nonlinear eigenvalue problem (NEP), where the nonlinearity arises from the use of a Dirichlet-to-Neumann map, which accounts for modeling unbounded domains. We consider a variational formulation and show that the spectrum consists of isolated eigenvalues of finite multiplicity that only can accumulate at infinity. The proposed method is based on a high order finite element discretization combined with a specialization of the Tensor Infinite Arnoldi method (TIAR). Using Toeplitz matrices, we show how to specialize this method to our specific structure. In particular we introduce a pole cancellation technique in order to increase the radius of convergence for computation of eigenvalues that lie close to the poles of the matrix-valued function. The solution scheme can be applied to multiple resonators with a varying refractive index that is not necessarily piecewise constant. We present two test cases to show stability, performance and numerical accuracy of the method. In particular the use of a high order finite element discretization together with TIAR results in an efficient and reliable method to compute resonances.

Ort, förlag, år, upplaga, sidor
Amsterdam: Elsevier, 2018
Nyckelord
Nonlinear eigenvalue problems, Helmholtz problem, Scattering resonances, Dirichlet-to-Neumann map, Arnoldi's method, Matrix functions
Nationell ämneskategori
Beräkningsmatematik
Forskningsämne
matematik
Identifikatorer
urn:nbn:se:umu:diva-138325 (URN)10.1016/j.cam.2017.08.012 (DOI)000415783000014 ()2-s2.0-85029359070 (Scopus ID)
Tillgänglig från: 2017-08-21 Skapad: 2017-08-21 Senast uppdaterad: 2023-03-24Bibliografiskt granskad
3. Computation of scattering resonances in absorptive and dispersive media with applications to metal-dielectric nano-structures
Öppna denna publikation i ny flik eller fönster >>Computation of scattering resonances in absorptive and dispersive media with applications to metal-dielectric nano-structures
2020 (Engelska)Ingår i: Journal of Computational Physics, ISSN 0021-9991, E-ISSN 1090-2716, Vol. 407, artikel-id 109220Artikel i tidskrift (Refereegranskat) Published
Abstract [en]

In this paper we consider scattering resonance computations in optics when the resonators consist of frequency dependent and lossy materials, such as metals at optical frequencies. The proposed computational approach combines a novel hp-FEM strategy, based on dispersion analysis for complex frequencies, with a fast implementation of the nonlinear eigenvalue solver NLEIGS. Numerical computations illustrate that the pre-asymptotic phase is significantly reduced compared to standard uniform h and p strategies. Moreover, the efficiency grows with the refractive index contrast, which makes the new strategy highly attractive for metal-dielectric structures. The hp-refinement strategy together with the efficient parallel code result in highly accurate approximations and short runtimes on multi processor platforms.

Ort, förlag, år, upplaga, sidor
Elsevier, 2020
Nyckelord
Plasmon resonance, Resonance modes, Nonlinear eigenvalue problems, Helmholtz problem, PML, Dispersion analysis, leaky modes, resonant states, quasimodes, quasi-normal modes
Nationell ämneskategori
Beräkningsmatematik
Identifikatorer
urn:nbn:se:umu:diva-159151 (URN)10.1016/j.jcp.2019.109220 (DOI)000519535500017 ()2-s2.0-85078588641 (Scopus ID)
Anmärkning

Originally included in thesis in manuscript form

Tillgänglig från: 2019-05-20 Skapad: 2019-05-20 Senast uppdaterad: 2023-03-24Bibliografiskt granskad
4. On spurious solutions encountered in Helmholtz scatteringresonance computations in Rd with applications tonano-photonics and acoustics
Öppna denna publikation i ny flik eller fönster >>On spurious solutions encountered in Helmholtz scatteringresonance computations in Rd with applications tonano-photonics and acoustics
2021 (Engelska)Ingår i: Journal of Computational Physics, ISSN 0021-9991, E-ISSN 1090-2716, Vol. 429, artikel-id 110024Artikel i tidskrift (Refereegranskat) Published
Abstract [en]

In this paper, we consider a sorting scheme for potentially spurious scattering resonant pairs in one- and two-dimensional electromagnetic problems and in three-dimensional acoustic problems. The novel sorting scheme is based on a Lippmann-Schwinger type of volume integral equation and can, therefore, be applied to structures with graded materials as well as to configurations including piece-wise constant material properties. For TM/TE polarized electromagnetic waves and for acoustic waves, we compute first approximations of scattering resonances with finite elements. Then, we apply the novel sorting scheme to the computed eigenpairs and use it to mark potentially spurious solutions in electromagnetic and acoustic scattering resonances computations at a low computational cost. Several test cases with Drude-Lorentz dielectric resonators as well as with graded material properties are considered.

Ort, förlag, år, upplaga, sidor
Elsevier, 2021
Nyckelord
plasmon resonance, acoustic scattering resonances, resonance modes, nonlinear eigenvalue problems, Helmholtz problem, pseudospectrum, PML, DtN, leaky modes, resonant states, quasi-normal modes
Nationell ämneskategori
Beräkningsmatematik
Identifikatorer
urn:nbn:se:umu:diva-159153 (URN)10.1016/j.jcp.2020.110024 (DOI)000618824400001 ()2-s2.0-85097236464 (Scopus ID)
Forskningsfinansiär
Vetenskapsrådet, 621-2012-3863
Anmärkning

Previously included in manuscript form, with title "Removal of spurious solutions encountered in Helmholtz scattering resonance computations in R^d".

Tillgänglig från: 2019-05-20 Skapad: 2019-05-20 Senast uppdaterad: 2021-09-10Bibliografiskt granskad

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Araujo-Cabarcas, Juan Carlos

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