L11a173

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L11a172.gif

L11a172

L11a174.gif

L11a174

L11a173.gif
(Knotscape image)
See the full Thistlethwaite Link Table (up to 11 crossings).

Visit L11a173 at Knotilus!


Link Presentations

[edit Notes on L11a173's Link Presentations]

Planar diagram presentation X8192 X2,9,3,10 X10,3,11,4 X20,14,21,13 X14,6,15,5 X4,21,5,22 X16,7,17,8 X22,15,7,16 X18,12,19,11 X12,20,13,19 X6,18,1,17
Gauss code {1, -2, 3, -6, 5, -11}, {7, -1, 2, -3, 9, -10, 4, -5, 8, -7, 11, -9, 10, -4, 6, -8}
A Braid Representative {{{braid_table}}}
A Morse Link Presentation L11a173 ML.gif

Polynomial invariants

Multivariable Alexander Polynomial (in [math]\displaystyle{ u }[/math], [math]\displaystyle{ v }[/math], [math]\displaystyle{ w }[/math], ...) [math]\displaystyle{ -\frac{\left(t(1) t(2)^3-t(1) t(2)^2+t(2)^2+t(1) t(2)-t(2)-t(1)+1\right) \left(t(1) t(2)^3-t(2)^3-t(1) t(2)^2+t(2)^2+t(1) t(2)-t(2)+1\right)}{t(1) t(2)^3} }[/math] (db)
Jones polynomial [math]\displaystyle{ q^{9/2}-3 q^{7/2}+6 q^{5/2}-10 q^{3/2}+13 \sqrt{q}-\frac{16}{\sqrt{q}}+\frac{15}{q^{3/2}}-\frac{14}{q^{5/2}}+\frac{10}{q^{7/2}}-\frac{6}{q^{9/2}}+\frac{3}{q^{11/2}}-\frac{1}{q^{13/2}} }[/math] (db)
Signature -1 (db)
HOMFLY-PT polynomial [math]\displaystyle{ a^3 z^7+5 a^3 z^5+8 a^3 z^3+4 a^3 z+a^3 z^{-1} -a z^9-7 a z^7+z^7 a^{-1} -18 a z^5+5 z^5 a^{-1} -20 a z^3+8 z^3 a^{-1} -9 a z+4 z a^{-1} -a z^{-1} }[/math] (db)
Kauffman polynomial [math]\displaystyle{ -2 a^2 z^{10}-2 z^{10}-5 a^3 z^9-9 a z^9-4 z^9 a^{-1} -6 a^4 z^8-a^2 z^8-4 z^8 a^{-2} +z^8-5 a^5 z^7+13 a^3 z^7+32 a z^7+11 z^7 a^{-1} -3 z^7 a^{-3} -3 a^6 z^6+15 a^4 z^6+12 a^2 z^6+10 z^6 a^{-2} -z^6 a^{-4} +5 z^6-a^7 z^5+11 a^5 z^5-17 a^3 z^5-53 a z^5-15 z^5 a^{-1} +9 z^5 a^{-3} +6 a^6 z^4-15 a^4 z^4-21 a^2 z^4-5 z^4 a^{-2} +3 z^4 a^{-4} -8 z^4+2 a^7 z^3-7 a^5 z^3+7 a^3 z^3+39 a z^3+17 z^3 a^{-1} -6 z^3 a^{-3} -a^6 z^2+4 a^4 z^2+8 a^2 z^2+z^2 a^{-2} -2 z^2 a^{-4} +6 z^2+2 a^5 z-3 a^3 z-11 a z-6 z a^{-1} -a^2+a^3 z^{-1} +a z^{-1} }[/math] (db)

Khovanov Homology

The coefficients of the monomials [math]\displaystyle{ t^rq^j }[/math] are shown, along with their alternating sums [math]\displaystyle{ \chi }[/math] (fixed [math]\displaystyle{ j }[/math], alternation over [math]\displaystyle{ r }[/math]).   
\ r
  \  
j \
-6-5-4-3-2-1012345χ
10           1-1
8          2 2
6         41 -3
4        62  4
2       74   -3
0      96    3
-2     78     1
-4    78      -1
-6   48       4
-8  26        -4
-10 14         3
-12 2          -2
-141           1
Integral Khovanov Homology

(db, data source)

  
[math]\displaystyle{ \dim{\mathcal G}_{2r+i}\operatorname{KH}^r_{\mathbb Z} }[/math] [math]\displaystyle{ i=-2 }[/math] [math]\displaystyle{ i=0 }[/math]
[math]\displaystyle{ r=-6 }[/math] [math]\displaystyle{ {\mathbb Z} }[/math]
[math]\displaystyle{ r=-5 }[/math] [math]\displaystyle{ {\mathbb Z}^{2}\oplus{\mathbb Z}_2 }[/math] [math]\displaystyle{ {\mathbb Z} }[/math]
[math]\displaystyle{ r=-4 }[/math] [math]\displaystyle{ {\mathbb Z}^{4}\oplus{\mathbb Z}_2^{2} }[/math] [math]\displaystyle{ {\mathbb Z}^{2} }[/math]
[math]\displaystyle{ r=-3 }[/math] [math]\displaystyle{ {\mathbb Z}^{6}\oplus{\mathbb Z}_2^{4} }[/math] [math]\displaystyle{ {\mathbb Z}^{4} }[/math]
[math]\displaystyle{ r=-2 }[/math] [math]\displaystyle{ {\mathbb Z}^{8}\oplus{\mathbb Z}_2^{6} }[/math] [math]\displaystyle{ {\mathbb Z}^{7} }[/math]
[math]\displaystyle{ r=-1 }[/math] [math]\displaystyle{ {\mathbb Z}^{8}\oplus{\mathbb Z}_2^{7} }[/math] [math]\displaystyle{ {\mathbb Z}^{7} }[/math]
[math]\displaystyle{ r=0 }[/math] [math]\displaystyle{ {\mathbb Z}^{8}\oplus{\mathbb Z}_2^{8} }[/math] [math]\displaystyle{ {\mathbb Z}^{9} }[/math]
[math]\displaystyle{ r=1 }[/math] [math]\displaystyle{ {\mathbb Z}^{6}\oplus{\mathbb Z}_2^{7} }[/math] [math]\displaystyle{ {\mathbb Z}^{7} }[/math]
[math]\displaystyle{ r=2 }[/math] [math]\displaystyle{ {\mathbb Z}^{4}\oplus{\mathbb Z}_2^{6} }[/math] [math]\displaystyle{ {\mathbb Z}^{6} }[/math]
[math]\displaystyle{ r=3 }[/math] [math]\displaystyle{ {\mathbb Z}^{2}\oplus{\mathbb Z}_2^{4} }[/math] [math]\displaystyle{ {\mathbb Z}^{4} }[/math]
[math]\displaystyle{ r=4 }[/math] [math]\displaystyle{ {\mathbb Z}\oplus{\mathbb Z}_2^{2} }[/math] [math]\displaystyle{ {\mathbb Z}^{2} }[/math]
[math]\displaystyle{ r=5 }[/math] [math]\displaystyle{ {\mathbb Z}_2 }[/math] [math]\displaystyle{ {\mathbb Z} }[/math]

Computer Talk

Much of the above data can be recomputed by Mathematica using the package KnotTheory`. See A Sample KnotTheory` Session.

Modifying This Page

Read me first: Modifying Knot Pages

See/edit the Link Page master template (intermediate).

See/edit the Link_Splice_Base (expert).

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