Slice knot

A smooth slice disk in Morse position, showing minima, saddles and a maximum, and as an illustration a movie for the Kinoshita–Terasaka knot

A slice knot is a mathematical knot in 3-dimensional space that bounds an embedded disk in 4-dimensional space.

Definition

A knot is said to be a topologically slice knot or a smoothly slice knot, if it is the boundary of an embedded disk in the 4-ball , which is locally flat or smooth, respectively. Here we use : the 3-sphere is the boundary of the four-dimensional ball Every smoothly slice knot is topologically slice because a smoothly embedded disk is locally flat. Usually, smoothly slice knots are also just called slice. Both types of slice knots are important in 3- and 4-dimensional topology.

Smoothly slice knots are often illustrated using knots diagrams of ribbon knots and it is an open question whether there are any smoothly slice knots which are not ribbon knots (′Slice-ribbon conjecture′).

Cone construction

Cone over the trefoil knot

The conditions locally-flat or smooth are essential in the definition: For every knot we can construct the cone over the knot which is a disk in the 4-ball with the required property with the exception that it is not locally-flat or smooth at the singularity (it works for the trivial knot, though).

Note, that the disk in the illustration on the right does not have self-intersections in 4-space. These only occur in the projection to three-dimensional space. Therefore, the disk is ′correctly′ embedded at every point but not at the singularity (it is not locally-flat there).

Slice knots and the knot concordance group

Two oriented knots are said to be concordant, if the connected sum is slice. In the same way as before, we distinguish topologically and smoothly concordant. With we denote the mirror image of where in addition the orientation is reversed. The relationship ′concordant′ is reflexive because is slice for every knot . It is also possible to show that it is transitive: if is concordant to and is concordant to then is concordant to . Since the relation is also symmetric, it is an equivalence relation. The equivalence classes together with the connected sum of knots as operation then form an abelian group which is called the (topological or smooth) knot concordance group. The neutral element in this group is the set of slice knots (topological or smooth, respectively).

Examples

Using the trefoil knot we illustrate the reflexivity of the concordance relation: every knot is concordant to itself. In the definition of concordance two reversions of orientations occur: The knot orientation is reversed (green and red arrow) and also the orientation of 3-space. The effect of the latter is the knot's mirroring.

Every ribbon knot is a smoothly slice knot because—with the exception of the ribbon singularities—the knot already bounds an embedded disk (in 3-space). The ribbon singularities may be deformed in a small neighbourhood into 4-space so that the disk is embedded.

There are 21 non-trivial slice prime knots with crossing number . These are , , , , , , , , , , , , , , , , , , , and . Up to this crossing number there are no topologically slice knots which are not smoothly slice.[1] Starting with crossing number 11 there is such an example, however: The Conway knot (named after John Horton Conway) is a topologically but not smoothly slice knot.[2] On the other hand, the Kinoshita-Terasaka knot, a so-called ′mutant′ of the Conway knot, is smoothly slice. Twist knots are, except for the trivial knot and the Stevedore knot , not slice.[3] All topologically and smoothly slice knots with crossing number are known.[4] Composite slice knots up to crossing number 12 are, besides those of the form and , the two more interesting knots and .[5]

Invariants

The following properties are valid for topologically and smoothly slice knots: The Alexander polynomial of a slice knot can be written as with a Laurent polynomial with integer coefficients (Fox-Milnor condition).[6] It follows that the knot's determinant () is a square number.

The signature is an invariant of concordance classes and the signature of slice knots is zero. Furthermore, the signature map is a homomorphism from concordance group to the integers: The signature of the sum of two concordance classes is the sum of the two signatures.

  • It follows that the concordance group contains elements of infinite order: The signature of a trefoil knot is ±2 and the signature of the concordance class of the connected sum of trefoils is and therefore not 0.
  • The concordance group also contains elements of order 2: The figure-eight knot is amphicheiral and invertible, and therefore we have . In the concordance group we find . Since the determinant of the figure-eight knot is 5, which is not a square number, this knot is not slice and it follows that its order in the concordance group is 2. Of course, knots with a finite order in the concordance group always have signature 0.

For both variants of the concordance group it is unknown whether elements of finite order exist.

On the other hand, invariants with different properties for the two concordance variants exist: Knots with trivial Alexander polynomial () are always topologically slice, but not necessarily smoothly slice (the Conway knot is an example for that). Rasmussen's s-invariant vanishes for smoothly slice, but in general not for topologically slice knots.[7]

Geometrical description of the concordance relation

Top: The composition of two knot concordances shows the transitivity in a geometric way. Bottom: A concordance of genus 1 between two knots. If the knot on the left is trivial then the knot on the right has a smooth 4-genus of 0 or 1 — it is the boundary of an embedded surface of genus 1 but could also bound a disk.

As an alternative to the above definition of concordance using slice knots there is also a second equivalent definition. Two oriented knots and are concordant if they are the boundary of a (locally flat or smooth) cylinder (in the 4-dimensional space ). The orientations of the two knots have to be consistent to the cylinder's orientation, which is illustrated in the third figure. The boundary of are two with different orientations[8] and therefore two mirrored trefoils are shown as boundary of the cylinder. Connecting the two knots by cutting out a strip from the cylinder yields a disk, showing that for all knots the connected sum is slice. In both definitions a knot is slice if and only if it is concordant to the trivial knot.

This can be illustrated also with the first figure at the top of this article: If a small disk at the local minimum on the bottom left is cut out then the boundary of the surface at this place is a trivial knot and the surface is a cylinder. At the other end of the cylinder we have a slice knot. If the disk (or cylinder) is smoothly embedded it can be slightly deformed to a so-called Morse position.

This is useful because the critical points with respect to the radial function r carry geometrical meaning. At saddle points, trivial components are added or destroyed (band moves, also called fusion and fission). For slice knots any number of these band moves are possible, whereas for ribbon knots only fusions may occur and fissions are not allowed.

In the illustration on the right the geometrical description of the concordance is rotated by 90° and the parameter r is renamed to t. This name fits well to a time interpretation of a surface ′movie′.

4-genus

An analogous definition as for slice knots may be done with surfaces of larger genus. The 4-genus (also called ′slice genus′) of a knot is therefore defined as the smallest genus of an embedded surface in 4-space of which the knot is the boundary. As before, we distinguish the topological and smooth 4-genus. Knots with 4-genus 0 are slice knots because a disk, the simplest surface, has genus 0. The 4-genus is always smaller or equal to the knot's genus because this invariant is defined using Seifert surfaces which are embedded already in three-dimensional space.

Examples for knots with different values for their topological and smooth 4-genus are listed in the following table. The Conway knot 11n34 is, as already mentioned, the first example in the knot tables for a topologically but not smoothly slice knot. Judging from the values in the table we could conclude that the smooth and the topological 4-genus always differ by 1, when they are not equal. This is not the case, however, and the difference can be arbitrarily large.[9] It is not known, though, (as of 2017), whether there are alternating knots with a difference > 1.[10]

4-genus (smooth) 4 2 4 3 3 1
4-genus (top.) 3 1 3 2 2 0

Bibliography

  • Dale Rolfsen: Knots and Links, Publish or Perish, 1976, Chapter 8.E
  • Charles Livingston: Knot theory, Carus Mathematical Monographs, 1993
  • Charles Livingston: A Survey of Classical Knot Concordance, Chapter 7 in „Handbook of Knot Theory“, Elsevier, 2005

See also

  • Link concordance – Link equivalence relation weaker than isotopy but stronger than homotopy

References

  1. ^ See C. Livingston and A. H. Moore: KnotInfo: Table of Knot Invariants, https://knotinfo.math.indiana.edu/ for the notation and list of slice knots (genus-4D = 0 and genus-4D (Top.) = 0).
  2. ^ Lisa Piccirillo: The Conway knot is not slice. Ann. of Math. 191, No. 2, p. 581–591, 2020.
  3. ^ Andrew Casson, Cameron Gordon: Cobordism of Classical Knots, in: A. Marin, L. Guillou: A la recherche de la topologie perdue, Progress in Mathematics, Birkhäuser 1986.
  4. ^ Ribbon diagrams for them can be found in: C. Lamm, The Search for Nonsymmetric Ribbon Knots, Exp. Math. 30, p. 349–363, 2021.
  5. ^ The mirror variants of the knots have to be chosen in a way that the total signature is 0.
  6. ^ Ralph Fox, John Milnor: Singularities of 2-Spheres in 4-Space and Cobordism of Knots. Osaka J. Math. 3, p. 257–267, 1966.
  7. ^ Jacob Rasmussen: Khovanov homology and the slice genus. Inv. Math. 182, p. 419–447, 2010.
  8. ^ For the orientation of a product see Tammo tom Dieck: Algebraic Topology, EMS Textbooks in Mathematics, 2008 (online [1], p. 373).
  9. ^ P. Feller, D. McCoy: On 2-bridge knots with differing smooth and topological slice genera, Proc. Amer. Math. Soc. 144, p. 5435–5442, 2016.
  10. ^ See the conference report Thirty Years of Floer Theory for 3-manifolds, Banff International Research Station, 2017, Problem 25, p. 12.

Read other articles:

العلاقات البرازيلية الليسوتوية البرازيل ليسوتو   البرازيل   ليسوتو تعديل مصدري - تعديل   العلاقات البرازيلية الليسوتوية هي العلاقات الثنائية التي تجمع بين البرازيل وليسوتو.[1][2][3][4][5] مقارنة بين البلدين هذه مقارنة عامة ومرجعية للدولتين: و�...

 

Artikel ini perlu diwikifikasi agar memenuhi standar kualitas Wikipedia. Anda dapat memberikan bantuan berupa penambahan pranala dalam, atau dengan merapikan tata letak dari artikel ini. Untuk keterangan lebih lanjut, klik [tampil] di bagian kanan. Mengganti markah HTML dengan markah wiki bila dimungkinkan. Tambahkan pranala wiki. Bila dirasa perlu, buatlah pautan ke artikel wiki lainnya dengan cara menambahkan [[ dan ]] pada kata yang bersangkutan (lihat WP:LINK untuk keterangan lebih lanjut...

 

Australian soccer player Chloe Logarzo Logarzo in 2016Personal informationFull name Chloe Logarzo[1]Date of birth (1994-12-22) 22 December 1994 (age 29)Place of birth Sydney, AustraliaHeight 1.65 m (5 ft 5 in)[2]Position(s) MidfielderTeam informationCurrent team Western UnitedNumber 6Senior career*Years Team Apps (Gls)2011–2015 Sydney FC 48 (11)2014 Colorado Pride 10 (8)2015–2016 Newcastle Jets 10 (1)2016 North Shore Mariners 6 (2)2016 Eskilstuna United...

Rapid transit system in Suzhou, China Suzhou Metro Chinese nameTraditional Chinese蘇州軌道交通Simplified Chinese苏州轨道交通TranscriptionsStandard MandarinHanyu PinyinSūzhōu Guǐdào Jiāotōng OverviewLocaleSuzhou, Jiangsu, ChinaTransit typeRapid transitNumber of lines6 (in operation)Number of stations196Daily ridership1,911,000 (1 January 2021 record)Annual ridership410 million (2021)[1]Websitehttp://www.sz-mtr.com/ (Chinese)OperationBegan operationApril 28, ...

 

Durham Cathedral The Dean of Durham is the head (primus inter pares – first among equals) and chair of the Chapter, the ruling body of Durham Cathedral. The dean and chapter are based at the Cathedral Church of Christ, Blessed Mary the Virgin and St Cuthbert of Durham in Durham. The cathedral is the mother church of the Diocese of Durham and seat of the Bishop of Durham. List of deans Early modern 1541–1551 Hugh Whitehead (last prior) 1551–1553 Robert Horne 1553–1558 Thomas Watson 15...

 

Via XXXIV, Ab Asturica BurdigalamLocationRoman provinces of Hispania and Aquitania, from Asturica Augusta (Astorga) to Burdigala (Bordeaux)TypeRoman roadHistoryBuilderRoman Empire Ab Asturica Burdigalam (numbered as Via XXXIV on the Antonine Itinerary) was a Roman road that linked the towns of Asturica Augusta (modern Astorga) in Gallaecia and Burdigala (modern Bordeaux) in Aquitania.[1] The Antonine Itinerary mentions that it ran through Pallantia (Palencia), the pass of Vindeleia, V...

إيلي ستان   معلومات شخصية الميلاد 17 أكتوبر 1967 (العمر 56 سنة) الطول 1.77 م (5 قدم 9 1⁄2 بوصة) مركز اللعب وسط الجنسية رومانيا  معلومات النادي النادي الحالي كاظمة (مدرب) مسيرة الشباب سنوات فريق 1979–1985 FC Gloria Buzău [الإنجليزية]‏ المسيرة الاحترافية1 سنوات فريق م. (هـ.)...

 

Este artículo o sección necesita referencias que aparezcan en una publicación acreditada. Busca fuentes: «Patty McCormack» – noticias · libros · académico · imágenesEste aviso fue puesto el 5 de enero de 2016. Patty McCormack McCormack y Peter Fonda en 1962.Información personalNombre de nacimiento Patricia Elena RussoNacimiento 21 de agosto de 1945 (78 años) Brooklyn, Nueva York, Estados UnidosNacionalidad EstadounidenseFamiliaCónyuge Bob Catania (m. 19...

 

Military operation Battle of LyubanPart of the Eastern Front of World War IIBattle of the Volkhov, 10 January – 28 June 1942Date7 January 1942 – 30 April 1942 (3 months, 3 weeks and 2 days)LocationSouthern shore of Lake Ladoga, near LyubanResult German victory Destruction of the second shock armyBelligerents  Germany  Soviet UnionCommanders and leaders Georg von Küchler Kirill MeretskovMikhail KhozinAndrey VlasovLeonid GovorovUnits involved Army Group North 18th ...

1891 short story by Robert Louis Stevenson For other uses, see The Bottle Imp (disambiguation). William Hatherell's 1905 illustration of the story; the bottle is presented to Keawe by its previous owner The Bottle Imp is an 1891 short story by the Scottish author Robert Louis Stevenson usually found in the short story collection Island Nights' Entertainments. It was first published in the New York Herald (February–March 1891) and Black and White magazine (London, March–April 1891). In it,...

 

Biblical psalm This article is about Psalm 40 in Hebrew (Masoretic) numbering. For Psalm 40 in Greek Septuagint or Latin Vulgate numbering, see Psalm 41. Psalm 40I waited patiently for the LORDPsalm 40 in Les Très Riches Heures du duc de Berry, Musée Condé, ChantillyOther namePsalm 39Expectans expectavi DominumTextattributed to King DavidLanguageHebrew (original) Psalm 40← Psalm 39Psalm 41 →BookBook of PsalmsHebrew Bible partKetuvimOrder in the Hebrew part1CategorySifrei Emet...

 

Title for Isabella I and Ferdinand II Wedding portrait of Queen Isabella I of Castile (right) and King Ferdinand II of Aragon (left), married in 1469 Part of a series on the History of Spain Prehistory Prehistoric Iberia Early history Pre-Roman peoples Carthaginian Spain (575–206 BCE) Roman Hispania Roman Conquest (206–27 BCE) Hispania (218 BCE–472 CE) Romanization Diocese of Hispania Early Middle Ages Kingdom of the Suebi (409–585) Kingdom of the Visigoths (418–721) Byzantine Spani...

Academic conference series This article has multiple issues. Please help improve it or discuss these issues on the talk page. (Learn how and when to remove these template messages) The topic of this article may not meet Wikipedia's general notability guideline. Please help to demonstrate the notability of the topic by citing reliable secondary sources that are independent of the topic and provide significant coverage of it beyond a mere trivial mention. If notability cannot be shown, the arti...

 

Den första observationen av en neutrino i en bubbelkammare (1970). En neutrino kommer från höger, träffar en proton, och tre laddade partiklar lämnar spår. En myon uppstår och lämnar det långa spåret till det övre vänstra hörnet; protonen lämnar det korta spåret snett uppåt; det tredje spåret är en pimeson som skapats i kollisionen. Neutrinon är en elementarpartikel som tillhör familjen leptoner och saknar elektrisk laddning. Den har halvtaligt spinn ( 1 2 ℏ {\displ...

 

Diagram showing relationships among concepts For concept maps in generic programming, see Concept (generic programming). Bubble map redirects here. For the type of thematic map, see Proportional symbol map. An example of a concept map about electricity Information mapping Topics and fields Business decision mapping Data visualization Graphic communication Infographics Information design Knowledge visualization Mental model Morphological analysis Ontology (information science) Schema (psycholo...

  لمعانٍ أخرى، طالع جامعة الزيتونة (توضيح). هذه المقالة لا تحتوي إلّا على استشهادات عامة فقط. فضلًا، ساهم بتحسينها بعزو الاستشهادات إلى المصادر في متن المقالة. (سبتمبر 2011) جامعة الزيتونة معلومات التأسيس 737 (منذ 1287 سنة)[1] النوع جامعة حكومية تكاليف الدراسة مجانية ( جام�...

 

This article is about Zemmouri. For other uses, see Zemmouri (disambiguation). Commune and town in Boumerdès Province, AlgeriaZemmouri زموريCommune and townZemmouriCoordinates: 36°47′N 3°36′E / 36.783°N 3.600°E / 36.783; 3.600Country AlgeriaProvinceBoumerdès ProvincePopulation (2008) • Total26,408Time zoneUTC+1 (CET) Zemmouri is a town and commune in the Bordj Menaïel District of Boumerdès Province, Algeria. As of 2008, the popula...

 

Voir aussi Réseau de Gand pour les anciennes lignes de la Société nationale des chemins de fer vicinaux (SNCV). Tramway de GandGentse tram Tramway de Gand Situation Gand Belgique Type Tramway Entrée en service 1874 (hippomobile)1899 (traction électrique) Longueur du réseau 32 km Lignes 4 Écartement des rails 1 000 mm Exploitant De Lijn Lignes du réseau    T1     T2     T3     T4...

Le vergini delle rocceGabriele d'Annunzio ai primi del Novecento AutoreGabriele D'Annunzio 1ª ed. originale1895 Genereromanzo Sottogeneredrammatico Lingua originaleitaliano AmbientazioneRoma – Popoli (Abruzzo) ProtagonistiClaudio Cantelmo CoprotagonistiAnatolia, Massimilla, Violante Altri personaggiil principe padreAldoinaOsvaldoAntonello Modifica dati su Wikidata · Manuale Le vergini delle rocce è un romanzo scritto nel 1895 da Gabriele D'Annunzio. Dopo aver pubblicato Il piacere, ...

 

River in New York, United StatesStony Clove CreekA photograph of Notch Lake near the Stony Clove Notch. It is the beginning of the Stony Clove Creek.Location of the mouth of Stony Clove CreekShow map of New York Adirondack ParkStony Clove Creek (the United States)Show map of the United StatesLocationCountryUnited StatesStateNew YorkRegionCatskill MountainsCountiesUlster, GreeneTownsHunter, ShandakenPhysical characteristicsSourceNotch Lake • locationStony Clove Notch, N of...