2007
GENREMonograph
AUTHORS PUBLISHERSpringer Nature
ABSTRACTConsidered one of the major fields of photonics of the beginning 21st century, plasmonics offers the potential to confine and guide light below the diffraction limit and promises a new generation of highly miniaturized photonic devices. Offering both a comprehensive introduction to the field and an extensive overview of the current state of the art, "Plasmonics: Fundamentals and Applications" should be of great value to the newcomer and to the experienced researcher. The first part of the book describes the fundamentals of this research area, starting with a review of Maxwell’s equations in a form suited to the description of metals. Subsequent chapters introduce the two major ingredients of plasmonics, surface plasmon polaritons at metallic interfaces and localized plasmons in nanostructures. The mathematics of their description, excitation and imaging of the modes are discussed. This part closes with a presentation of electromagnetic surface waves at lower frequencies in the THz and microwave regime, comprising both spoof or designer plasmons and surface phonon polaritons. Building on the fundamentals, the second part discusses some of the most prominent applications of plasmons: Plasmon waveguides, extraordinary transmission through aperture arrays, sensing and surface enhanced Raman scattering, spectroscopy as well as metamaterials. Exemplary studies in each of these fields taken from the original literature are presented. More... »
http://scigraph.springernature.com/pub.10.1007/0-387-37825-1
DOIhttp://dx.doi.org/10.1007/0-387-37825-1
ISBN978-0-387-33150-8 | 978-0-387-37825-1
DIMENSIONShttps://app.dimensions.ai/details/publication/pub.1028255731
JSON-LD is the canonical representation for SciGraph data.
TIP: You can open this SciGraph record using an external JSON-LD service: JSON-LD Playground Google SDTT
[
{
"@context": "https://springernature.github.io/scigraph/jsonld/sgcontext.json",
"about": [
{
"id": "http://purl.org/au-research/vocabulary/anzsrc-for/2008/09",
"inDefinedTermSet": "http://purl.org/au-research/vocabulary/anzsrc-for/2008/",
"name": "Engineering",
"type": "DefinedTerm"
},
{
"id": "http://purl.org/au-research/vocabulary/anzsrc-for/2008/0912",
"inDefinedTermSet": "http://purl.org/au-research/vocabulary/anzsrc-for/2008/",
"name": "Materials Engineering",
"type": "DefinedTerm"
}
],
"author": [
{
"affiliation": {
"alternateName": "Centre for Photonics & Photonic Materials, Department of Physics, University of Bath, BA2 7AY, Bath, United Kingdom",
"id": "http://www.grid.ac/institutes/grid.7340.0",
"name": [
"Centre for Photonics & Photonic Materials, Department of Physics, University of Bath, BA2 7AY, Bath, United Kingdom"
],
"type": "Organization"
},
"familyName": "Maier",
"givenName": "Stefan A.",
"id": "sg:person.0652737645.65",
"sameAs": [
"https://app.dimensions.ai/discover/publication?and_facet_researcher=ur.0652737645.65"
],
"type": "Person"
}
],
"datePublished": "2007",
"datePublishedReg": "2007-01-01",
"description": "Considered one of the major fields of photonics of the beginning 21st century, plasmonics offers the potential to confine and guide light below the diffraction limit and promises a new generation of highly miniaturized photonic devices. Offering both a comprehensive introduction to the field and an extensive overview of the current state of the art, \"Plasmonics: Fundamentals and Applications\" should be of great value to the newcomer and to the experienced researcher. The first part of the book describes the fundamentals of this research area, starting with a review of Maxwell\u2019s equations in a form suited to the description of metals. Subsequent chapters introduce the two major ingredients of plasmonics, surface plasmon polaritons at metallic interfaces and localized plasmons in nanostructures. The mathematics of their description, excitation and imaging of the modes are discussed. This part closes with a presentation of electromagnetic surface waves at lower frequencies in the THz and microwave regime, comprising both spoof or designer plasmons and surface phonon polaritons. Building on the fundamentals, the second part discusses some of the most prominent applications of plasmons: Plasmon waveguides, extraordinary transmission through aperture arrays, sensing and surface enhanced Raman scattering, spectroscopy as well as metamaterials. Exemplary studies in each of these fields taken from the original literature are presented.",
"genre": "monograph",
"id": "sg:pub.10.1007/0-387-37825-1",
"inLanguage": "en",
"isAccessibleForFree": false,
"isbn": [
"978-0-387-33150-8",
"978-0-387-37825-1"
],
"keywords": [
"electromagnetic surface waves",
"surface plasmon polaritons",
"photonic devices",
"diffraction limit",
"phonon polaritons",
"plasmon polaritons",
"plasmon waveguides",
"extraordinary transmission",
"microwave regime",
"Raman scattering",
"plasmons",
"plasmonics",
"metallic interfaces",
"aperture array",
"surface waves",
"polaritons",
"Maxwell's equations",
"description of metals",
"photonics",
"field",
"prominent applications",
"THz",
"waveguide",
"scattering",
"excitation",
"metamaterials",
"low frequency",
"nanostructures",
"new generation",
"spectroscopy",
"waves",
"light",
"fundamentals",
"regime",
"applications",
"devices",
"comprehensive introduction",
"equations",
"array",
"mode",
"original literature",
"description",
"imaging",
"sensing",
"surface",
"state",
"limit",
"interface",
"metals",
"first part",
"frequency",
"second part",
"generation",
"spoof",
"extensive overview",
"transmission",
"exemplary studies",
"research area",
"current state",
"potential",
"great value",
"subsequent chapters",
"major field",
"part",
"major ingredient",
"values",
"ingredients",
"area",
"introduction",
"overview",
"form",
"art",
"study",
"researchers",
"chapter",
"literature",
"experienced researchers",
"review",
"newcomers",
"mathematics",
"book",
"century",
"presentation"
],
"name": "Plasmonics: Fundamentals and Applications",
"productId": [
{
"name": "dimensions_id",
"type": "PropertyValue",
"value": [
"pub.1028255731"
]
},
{
"name": "doi",
"type": "PropertyValue",
"value": [
"10.1007/0-387-37825-1"
]
}
],
"publisher": {
"name": "Springer Nature",
"type": "Organisation"
},
"sameAs": [
"https://doi.org/10.1007/0-387-37825-1",
"https://app.dimensions.ai/details/publication/pub.1028255731"
],
"sdDataset": "books",
"sdDatePublished": "2022-06-01T22:26",
"sdLicense": "https://scigraph.springernature.com/explorer/license/",
"sdPublisher": {
"name": "Springer Nature - SN SciGraph project",
"type": "Organization"
},
"sdSource": "s3://com-springernature-scigraph/baseset/20220601/entities/gbq_results/book/book_17.jsonl",
"type": "Book",
"url": "https://doi.org/10.1007/0-387-37825-1"
}
]
Download the RDF metadata as: json-ld nt turtle xml License info
JSON-LD is a popular format for linked data which is fully compatible with JSON.
curl -H 'Accept: application/ld+json' 'https://scigraph.springernature.com/pub.10.1007/0-387-37825-1'
N-Triples is a line-based linked data format ideal for batch operations.
curl -H 'Accept: application/n-triples' 'https://scigraph.springernature.com/pub.10.1007/0-387-37825-1'
Turtle is a human-readable linked data format.
curl -H 'Accept: text/turtle' 'https://scigraph.springernature.com/pub.10.1007/0-387-37825-1'
RDF/XML is a standard XML format for linked data.
curl -H 'Accept: application/rdf+xml' 'https://scigraph.springernature.com/pub.10.1007/0-387-37825-1'
This table displays all metadata directly associated to this object as RDF triples.
133 TRIPLES
21 PREDICATES
108 URIs
101 LITERALS
5 BLANK NODES
Subject | Predicate | Object | |
---|---|---|---|
1 | sg:pub.10.1007/0-387-37825-1 | schema:about | anzsrc-for:09 |
2 | ″ | ″ | anzsrc-for:0912 |
3 | ″ | schema:author | Nd398d3db235c418380d2787167db0431 |
4 | ″ | schema:datePublished | 2007 |
5 | ″ | schema:datePublishedReg | 2007-01-01 |
6 | ″ | schema:description | Considered one of the major fields of photonics of the beginning 21st century, plasmonics offers the potential to confine and guide light below the diffraction limit and promises a new generation of highly miniaturized photonic devices. Offering both a comprehensive introduction to the field and an extensive overview of the current state of the art, "Plasmonics: Fundamentals and Applications" should be of great value to the newcomer and to the experienced researcher. The first part of the book describes the fundamentals of this research area, starting with a review of Maxwell’s equations in a form suited to the description of metals. Subsequent chapters introduce the two major ingredients of plasmonics, surface plasmon polaritons at metallic interfaces and localized plasmons in nanostructures. The mathematics of their description, excitation and imaging of the modes are discussed. This part closes with a presentation of electromagnetic surface waves at lower frequencies in the THz and microwave regime, comprising both spoof or designer plasmons and surface phonon polaritons. Building on the fundamentals, the second part discusses some of the most prominent applications of plasmons: Plasmon waveguides, extraordinary transmission through aperture arrays, sensing and surface enhanced Raman scattering, spectroscopy as well as metamaterials. Exemplary studies in each of these fields taken from the original literature are presented. |
7 | ″ | schema:genre | monograph |
8 | ″ | schema:inLanguage | en |
9 | ″ | schema:isAccessibleForFree | false |
10 | ″ | schema:isbn | 978-0-387-33150-8 |
11 | ″ | ″ | 978-0-387-37825-1 |
12 | ″ | schema:keywords | Maxwell's equations |
13 | ″ | ″ | Raman scattering |
14 | ″ | ″ | THz |
15 | ″ | ″ | aperture array |
16 | ″ | ″ | applications |
17 | ″ | ″ | area |
18 | ″ | ″ | array |
19 | ″ | ″ | art |
20 | ″ | ″ | book |
21 | ″ | ″ | century |
22 | ″ | ″ | chapter |
23 | ″ | ″ | comprehensive introduction |
24 | ″ | ″ | current state |
25 | ″ | ″ | description |
26 | ″ | ″ | description of metals |
27 | ″ | ″ | devices |
28 | ″ | ″ | diffraction limit |
29 | ″ | ″ | electromagnetic surface waves |
30 | ″ | ″ | equations |
31 | ″ | ″ | excitation |
32 | ″ | ″ | exemplary studies |
33 | ″ | ″ | experienced researchers |
34 | ″ | ″ | extensive overview |
35 | ″ | ″ | extraordinary transmission |
36 | ″ | ″ | field |
37 | ″ | ″ | first part |
38 | ″ | ″ | form |
39 | ″ | ″ | frequency |
40 | ″ | ″ | fundamentals |
41 | ″ | ″ | generation |
42 | ″ | ″ | great value |
43 | ″ | ″ | imaging |
44 | ″ | ″ | ingredients |
45 | ″ | ″ | interface |
46 | ″ | ″ | introduction |
47 | ″ | ″ | light |
48 | ″ | ″ | limit |
49 | ″ | ″ | literature |
50 | ″ | ″ | low frequency |
51 | ″ | ″ | major field |
52 | ″ | ″ | major ingredient |
53 | ″ | ″ | mathematics |
54 | ″ | ″ | metallic interfaces |
55 | ″ | ″ | metals |
56 | ″ | ″ | metamaterials |
57 | ″ | ″ | microwave regime |
58 | ″ | ″ | mode |
59 | ″ | ″ | nanostructures |
60 | ″ | ″ | new generation |
61 | ″ | ″ | newcomers |
62 | ″ | ″ | original literature |
63 | ″ | ″ | overview |
64 | ″ | ″ | part |
65 | ″ | ″ | phonon polaritons |
66 | ″ | ″ | photonic devices |
67 | ″ | ″ | photonics |
68 | ″ | ″ | plasmon polaritons |
69 | ″ | ″ | plasmon waveguides |
70 | ″ | ″ | plasmonics |
71 | ″ | ″ | plasmons |
72 | ″ | ″ | polaritons |
73 | ″ | ″ | potential |
74 | ″ | ″ | presentation |
75 | ″ | ″ | prominent applications |
76 | ″ | ″ | regime |
77 | ″ | ″ | research area |
78 | ″ | ″ | researchers |
79 | ″ | ″ | review |
80 | ″ | ″ | scattering |
81 | ″ | ″ | second part |
82 | ″ | ″ | sensing |
83 | ″ | ″ | spectroscopy |
84 | ″ | ″ | spoof |
85 | ″ | ″ | state |
86 | ″ | ″ | study |
87 | ″ | ″ | subsequent chapters |
88 | ″ | ″ | surface |
89 | ″ | ″ | surface plasmon polaritons |
90 | ″ | ″ | surface waves |
91 | ″ | ″ | transmission |
92 | ″ | ″ | values |
93 | ″ | ″ | waveguide |
94 | ″ | ″ | waves |
95 | ″ | schema:name | Plasmonics: Fundamentals and Applications |
96 | ″ | schema:productId | N91d30c3bb2324eb88f9f899bb99f4ab9 |
97 | ″ | ″ | Nca0f866cca9944f680f03e66fdd11aa5 |
98 | ″ | schema:publisher | N827824ea684841d3b91e8b91caf942a0 |
99 | ″ | schema:sameAs | https://app.dimensions.ai/details/publication/pub.1028255731 |
100 | ″ | ″ | https://doi.org/10.1007/0-387-37825-1 |
101 | ″ | schema:sdDatePublished | 2022-06-01T22:26 |
102 | ″ | schema:sdLicense | https://scigraph.springernature.com/explorer/license/ |
103 | ″ | schema:sdPublisher | N0ba47264de654fa2b243b255d1ba9a87 |
104 | ″ | schema:url | https://doi.org/10.1007/0-387-37825-1 |
105 | ″ | sgo:license | sg:explorer/license/ |
106 | ″ | sgo:sdDataset | books |
107 | ″ | rdf:type | schema:Book |
108 | N0ba47264de654fa2b243b255d1ba9a87 | schema:name | Springer Nature - SN SciGraph project |
109 | ″ | rdf:type | schema:Organization |
110 | N827824ea684841d3b91e8b91caf942a0 | schema:name | Springer Nature |
111 | ″ | rdf:type | schema:Organisation |
112 | N91d30c3bb2324eb88f9f899bb99f4ab9 | schema:name | doi |
113 | ″ | schema:value | 10.1007/0-387-37825-1 |
114 | ″ | rdf:type | schema:PropertyValue |
115 | Nca0f866cca9944f680f03e66fdd11aa5 | schema:name | dimensions_id |
116 | ″ | schema:value | pub.1028255731 |
117 | ″ | rdf:type | schema:PropertyValue |
118 | Nd398d3db235c418380d2787167db0431 | rdf:first | sg:person.0652737645.65 |
119 | ″ | rdf:rest | rdf:nil |
120 | anzsrc-for:09 | schema:inDefinedTermSet | anzsrc-for: |
121 | ″ | schema:name | Engineering |
122 | ″ | rdf:type | schema:DefinedTerm |
123 | anzsrc-for:0912 | schema:inDefinedTermSet | anzsrc-for: |
124 | ″ | schema:name | Materials Engineering |
125 | ″ | rdf:type | schema:DefinedTerm |
126 | sg:person.0652737645.65 | schema:affiliation | grid-institutes:grid.7340.0 |
127 | ″ | schema:familyName | Maier |
128 | ″ | schema:givenName | Stefan A. |
129 | ″ | schema:sameAs | https://app.dimensions.ai/discover/publication?and_facet_researcher=ur.0652737645.65 |
130 | ″ | rdf:type | schema:Person |
131 | grid-institutes:grid.7340.0 | schema:alternateName | Centre for Photonics & Photonic Materials, Department of Physics, University of Bath, BA2 7AY, Bath, United Kingdom |
132 | ″ | schema:name | Centre for Photonics & Photonic Materials, Department of Physics, University of Bath, BA2 7AY, Bath, United Kingdom |
133 | ″ | rdf:type | schema:Organization |