12a
0161
(K12a
0161
)
A knot diagram
1
Linearized knot diagam
3 5 9 2 11 12 1 10 4 8 7 6
Solving Sequence
7,11
12 6 1 8
2,5
3 4 10 9
c
11
c
6
c
12
c
7
c
5
c
2
c
4
c
10
c
9
c
1
, c
3
, c
8
Ideals for irreducible components
2
of X
par
I
u
1
= h−u
45
19u
43
+ ··· + b u, u
77
+ u
76
+ ··· + a 1, u
78
+ 2u
77
+ ··· 4u
2
1i
I
u
2
= hu
2
+ b u + 1, 2u
2
+ a 2, u
3
u
2
+ 2u 1i
* 2 irreducible components of dim
C
= 0, with total 81 representations.
1
The image of knot diagram is generated by the software Draw programme developed by An-
drew Bartholomew(http://www.layer8.co.uk/maths/draw/index.htm#Running-draw), where we modi-
fied some parts for our purpose(https://github.com/CATsTAILs/LinksPainter).
2
All coefficients of polynomials are rational numbers. But the coefficients are sometimes approximated
in decimal forms when there is not enough margin.
1
I.
I
u
1
= h−u
45
19u
43
+· · ·+bu, u
77
+u
76
+· · ·+a1, u
78
+2u
77
+· · ·4u
2
1i
(i) Arc colorings
a
7
=
0
u
a
11
=
1
0
a
12
=
1
u
2
a
6
=
u
u
3
+ u
a
1
=
u
2
+ 1
u
4
2u
2
a
8
=
u
5
+ 2u
3
+ u
u
7
3u
5
2u
3
+ u
a
2
=
u
77
u
76
+ ··· + 4u + 1
u
45
+ 19u
43
+ ··· 8u
2
+ u
a
5
=
u
3
2u
u
3
+ u
a
3
=
u
51
22u
49
+ ··· 16u
2
+ 6u
u
77
2u
76
+ ··· 2u
2
+ 1
a
4
=
2u
77
+ 2u
76
+ ··· 4u 1
u
77
2u
76
+ ··· u + 1
a
10
=
u
12
5u
10
9u
8
6u
6
+ u
2
+ 1
u
14
+ 6u
12
+ 13u
10
+ 10u
8
2u
6
4u
4
+ u
2
a
9
=
u
19
+ 8u
17
+ 26u
15
+ 42u
13
+ 31u
11
+ 2u
9
10u
7
4u
5
+ u
3
+ 2u
u
21
9u
19
+ ··· u
3
+ u
(ii) Obstruction class = 1
(iii) Cusp Shapes = u
77
2u
76
+ ··· + 19u + 1
2
(iv) u-Polynomials at the component
Crossings u-Polynomials at each crossing
c
1
u
78
+ 44u
77
+ ··· + 17u + 1
c
2
, c
4
u
78
4u
77
+ ··· + 9u 1
c
3
, c
9
u
78
u
77
+ ··· + 4u + 8
c
5
, c
7
u
78
2u
77
+ ··· + 4u 1
c
6
, c
11
, c
12
u
78
+ 2u
77
+ ··· 4u
2
1
c
8
, c
10
u
78
21u
77
+ ··· 1232u + 64
3
(v) Riley Polynomials at the component
Crossings Riley Polynomials at each crossing
c
1
y
78
16y
77
+ ··· 329y + 1
c
2
, c
4
y
78
44y
77
+ ··· 17y + 1
c
3
, c
9
y
78
21y
77
+ ··· 1232y + 64
c
5
, c
7
y
78
38y
77
+ ··· + 8y + 1
c
6
, c
11
, c
12
y
78
+ 66y
77
+ ··· + 8y + 1
c
8
, c
10
y
78
+ 67y
77
+ ··· 68864y + 4096
4
(vi) Complex Volumes and Cusp Shapes
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 0.221840 + 0.947945I
a = 0.90854 2.19426I
b = 0.63575 + 1.79124I
6.03562 1.43380I 0
u = 0.221840 0.947945I
a = 0.90854 + 2.19426I
b = 0.63575 1.79124I
6.03562 + 1.43380I 0
u = 0.322913 + 0.983251I
a = 0.59097 + 2.36662I
b = 0.89380 1.94580I
5.23022 + 7.49440I 0
u = 0.322913 0.983251I
a = 0.59097 2.36662I
b = 0.89380 + 1.94580I
5.23022 7.49440I 0
u = 0.266822 + 1.014570I
a = 0.265621 0.087182I
b = 0.763129 0.052329I
2.10877 + 2.64422I 0
u = 0.266822 1.014570I
a = 0.265621 + 0.087182I
b = 0.763129 + 0.052329I
2.10877 2.64422I 0
u = 0.201285 + 0.867169I
a = 0.61079 1.89983I
b = 0.17550 + 1.40684I
6.10936 1.32608I 0.73693 + 1.24858I
u = 0.201285 0.867169I
a = 0.61079 + 1.89983I
b = 0.17550 1.40684I
6.10936 + 1.32608I 0.73693 1.24858I
u = 0.316364 + 0.786903I
a = 0.12641 + 1.88878I
b = 0.12525 1.63413I
5.61969 + 7.17353I 1.91318 7.13043I
u = 0.316364 0.786903I
a = 0.12641 1.88878I
b = 0.12525 + 1.63413I
5.61969 7.17353I 1.91318 + 7.13043I
5
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 0.785147 + 0.185065I
a = 3.20268 + 3.17739I
b = 1.37992 2.53027I
2.75716 11.61650I 5.77587 + 8.60798I
u = 0.785147 0.185065I
a = 3.20268 3.17739I
b = 1.37992 + 2.53027I
2.75716 + 11.61650I 5.77587 8.60798I
u = 0.770791 + 0.171159I
a = 0.857137 + 0.494336I
b = 0.743484 + 0.108436I
0.46016 6.59193I 9.04398 + 5.71613I
u = 0.770791 0.171159I
a = 0.857137 0.494336I
b = 0.743484 0.108436I
0.46016 + 6.59193I 9.04398 5.71613I
u = 0.216613 + 0.756610I
a = 0.036625 + 0.331435I
b = 0.702068 0.142190I
2.39928 + 2.61834I 4.76572 3.85328I
u = 0.216613 0.756610I
a = 0.036625 0.331435I
b = 0.702068 + 0.142190I
2.39928 2.61834I 4.76572 + 3.85328I
u = 0.782132 + 0.079591I
a = 1.50273 + 2.21168I
b = 0.47522 1.74253I
4.89842 5.92763I 11.50709 + 7.07473I
u = 0.782132 0.079591I
a = 1.50273 2.21168I
b = 0.47522 + 1.74253I
4.89842 + 5.92763I 11.50709 7.07473I
u = 0.320177 + 1.177210I
a = 0.373766 + 1.202460I
b = 0.73975 1.50874I
1.55633 + 1.91915I 0
u = 0.320177 1.177210I
a = 0.373766 1.202460I
b = 0.73975 + 1.50874I
1.55633 1.91915I 0
6
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 0.756990 + 0.181313I
a = 2.99011 3.55109I
b = 1.19344 + 2.71479I
3.62530 + 5.27142I 4.61455 4.56249I
u = 0.756990 0.181313I
a = 2.99011 + 3.55109I
b = 1.19344 2.71479I
3.62530 5.27142I 4.61455 + 4.56249I
u = 0.773908 + 0.039316I
a = 0.028490 0.517470I
b = 0.307660 + 0.629701I
6.03009 1.10865I 14.3285 + 0.8012I
u = 0.773908 0.039316I
a = 0.028490 + 0.517470I
b = 0.307660 0.629701I
6.03009 + 1.10865I 14.3285 0.8012I
u = 0.051004 + 1.229700I
a = 0.65147 1.75217I
b = 0.546978 0.264959I
5.84021 1.10052I 0
u = 0.051004 1.229700I
a = 0.65147 + 1.75217I
b = 0.546978 + 0.264959I
5.84021 + 1.10052I 0
u = 0.743598 + 0.185676I
a = 3.33465 1.56772I
b = 1.28958 + 1.13847I
3.82604 2.40404I 4.47486 + 3.48448I
u = 0.743598 0.185676I
a = 3.33465 + 1.56772I
b = 1.28958 1.13847I
3.82604 + 2.40404I 4.47486 3.48448I
u = 0.724926 + 0.227700I
a = 2.97783 + 1.77944I
b = 1.03439 1.28165I
3.74163 3.33148I 4.54329 + 2.27222I
u = 0.724926 0.227700I
a = 2.97783 1.77944I
b = 1.03439 + 1.28165I
3.74163 + 3.33148I 4.54329 2.27222I
7
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 0.163517 + 1.233490I
a = 0.418961 + 0.316278I
b = 0.741466 + 0.295231I
2.91541 + 2.01642I 0
u = 0.163517 1.233490I
a = 0.418961 0.316278I
b = 0.741466 0.295231I
2.91541 2.01642I 0
u = 0.717043 + 0.182657I
a = 1.087960 0.258300I
b = 0.815686 0.256787I
0.315586 + 0.899815I 8.05190 1.09209I
u = 0.717043 0.182657I
a = 1.087960 + 0.258300I
b = 0.815686 + 0.256787I
0.315586 0.899815I 8.05190 + 1.09209I
u = 0.323388 + 1.222800I
a = 0.540462 0.141703I
b = 0.601785 + 0.420796I
2.39590 2.86000I 0
u = 0.323388 1.222800I
a = 0.540462 + 0.141703I
b = 0.601785 0.420796I
2.39590 + 2.86000I 0
u = 0.272850 + 1.244810I
a = 1.084010 0.348222I
b = 0.12739 + 1.81207I
2.00980 + 1.83090I 0
u = 0.272850 1.244810I
a = 1.084010 + 0.348222I
b = 0.12739 1.81207I
2.00980 1.83090I 0
u = 0.719177 + 0.040036I
a = 0.37747 2.59587I
b = 0.66798 + 1.81340I
1.67961 + 1.74944I 8.87795 3.96310I
u = 0.719177 0.040036I
a = 0.37747 + 2.59587I
b = 0.66798 1.81340I
1.67961 1.74944I 8.87795 + 3.96310I
8
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 0.274784 + 1.281070I
a = 1.74319 1.43094I
b = 1.33894 0.46268I
3.63721 3.47711I 0
u = 0.274784 1.281070I
a = 1.74319 + 1.43094I
b = 1.33894 + 0.46268I
3.63721 + 3.47711I 0
u = 0.688313
a = 3.35104
b = 1.29655
0.354274 12.4140
u = 0.298521 + 1.292870I
a = 1.55001 + 1.06840I
b = 1.15050 1.83635I
2.48033 + 5.43449I 0
u = 0.298521 1.292870I
a = 1.55001 1.06840I
b = 1.15050 + 1.83635I
2.48033 5.43449I 0
u = 0.330502 + 1.287190I
a = 0.148188 0.049151I
b = 0.044709 0.772496I
1.89914 5.09234I 0
u = 0.330502 1.287190I
a = 0.148188 + 0.049151I
b = 0.044709 + 0.772496I
1.89914 + 5.09234I 0
u = 0.337500 + 1.313270I
a = 2.00680 0.11521I
b = 0.20506 + 1.85852I
0.53996 9.96745I 0
u = 0.337500 1.313270I
a = 2.00680 + 0.11521I
b = 0.20506 1.85852I
0.53996 + 9.96745I 0
u = 0.118296 + 1.357210I
a = 0.617226 + 1.056650I
b = 0.33291 + 1.37529I
5.11060 + 4.79864I 0
9
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 0.118296 1.357210I
a = 0.617226 1.056650I
b = 0.33291 1.37529I
5.11060 4.79864I 0
u = 0.212992 + 1.351290I
a = 1.31861 + 0.66037I
b = 0.840813 + 1.053440I
4.03525 + 2.28010I 0
u = 0.212992 1.351290I
a = 1.31861 0.66037I
b = 0.840813 1.053440I
4.03525 2.28010I 0
u = 0.301735 + 1.364260I
a = 0.299894 + 0.766680I
b = 0.805459 + 0.404103I
5.19764 + 4.61194I 0
u = 0.301735 1.364260I
a = 0.299894 0.766680I
b = 0.805459 0.404103I
5.19764 4.61194I 0
u = 0.311251 + 1.368930I
a = 2.40297 0.78639I
b = 1.81013 1.33373I
8.73778 6.23313I 0
u = 0.311251 1.368930I
a = 2.40297 + 0.78639I
b = 1.81013 + 1.33373I
8.73778 + 6.23313I 0
u = 0.324957 + 1.366060I
a = 0.121142 0.795607I
b = 0.685934 0.203092I
4.39480 10.55880I 0
u = 0.324957 1.366060I
a = 0.121142 + 0.795607I
b = 0.685934 + 0.203092I
4.39480 + 10.55880I 0
u = 0.317497 + 1.368890I
a = 3.12911 0.00654I
b = 1.24074 3.25839I
8.52354 + 9.16648I 0
10
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 0.317497 1.368890I
a = 3.12911 + 0.00654I
b = 1.24074 + 3.25839I
8.52354 9.16648I 0
u = 0.330057 + 1.374490I
a = 3.07659 + 0.21604I
b = 1.51815 + 2.97295I
7.6876 15.6495I 0
u = 0.330057 1.374490I
a = 3.07659 0.21604I
b = 1.51815 2.97295I
7.6876 + 15.6495I 0
u = 0.295867 + 1.382440I
a = 2.29433 + 0.57982I
b = 1.61811 + 1.49611I
8.83720 + 0.37277I 0
u = 0.295867 1.382440I
a = 2.29433 0.57982I
b = 1.61811 1.49611I
8.83720 0.37277I 0
u = 0.01557 + 1.41703I
a = 0.590163 0.023145I
b = 0.502778 + 0.138020I
8.98429 + 3.00952I 0
u = 0.01557 1.41703I
a = 0.590163 + 0.023145I
b = 0.502778 0.138020I
8.98429 3.00952I 0
u = 0.00417 + 1.42134I
a = 0.267222 0.793896I
b = 0.64326 2.84980I
12.84860 1.47997I 0
u = 0.00417 1.42134I
a = 0.267222 + 0.793896I
b = 0.64326 + 2.84980I
12.84860 + 1.47997I 0
u = 0.02254 + 1.43315I
a = 0.103861 + 0.659204I
b = 0.28487 + 2.87993I
12.4992 + 7.7676I 0
11
Solutions to I
u
1
1(vol +
1CS) Cusp shape
u = 0.02254 1.43315I
a = 0.103861 0.659204I
b = 0.28487 2.87993I
12.4992 7.7676I 0
u = 0.359180 + 0.436801I
a = 0.662229 + 0.372982I
b = 0.248173 1.100090I
0.37969 + 3.21597I 7.04752 8.62566I
u = 0.359180 0.436801I
a = 0.662229 0.372982I
b = 0.248173 + 1.100090I
0.37969 3.21597I 7.04752 + 8.62566I
u = 0.472822 + 0.269583I
a = 1.58775 + 0.80986I
b = 0.165683 0.644607I
0.913188 0.312563I 10.41614 0.13435I
u = 0.472822 0.269583I
a = 1.58775 0.80986I
b = 0.165683 + 0.644607I
0.913188 + 0.312563I 10.41614 + 0.13435I
u = 0.419349
a = 1.23689
b = 0.399405
0.742145 13.5430
u = 0.135471 + 0.223794I
a = 0.41686 + 2.11056I
b = 0.419076 + 0.683835I
1.63000 0.53870I 3.53001 + 1.26153I
u = 0.135471 0.223794I
a = 0.41686 2.11056I
b = 0.419076 0.683835I
1.63000 + 0.53870I 3.53001 1.26153I
12
II. I
u
2
= hu
2
+ b u + 1, 2u
2
+ a 2, u
3
u
2
+ 2u 1i
(i) Arc colorings
a
7
=
0
u
a
11
=
1
0
a
12
=
1
u
2
a
6
=
u
u
2
u + 1
a
1
=
u
2
+ 1
u
2
+ u 1
a
8
=
1
0
a
2
=
2u
2
+ 2
u
2
+ u 1
a
5
=
u
2
1
u
2
u + 1
a
3
=
u
2
+ 1
0
a
4
=
u
2
+ 1
0
a
10
=
1
0
a
9
=
1
0
(ii) Obstruction class = 1
(iii) Cusp Shapes = 3u
2
4u + 4
13
(iv) u-Polynomials at the component
Crossings u-Polynomials at each crossing
c
1
, c
2
(u 1)
3
c
3
, c
8
, c
9
c
10
u
3
c
4
(u + 1)
3
c
5
, c
7
u
3
u
2
+ 1
c
6
u
3
+ u
2
+ 2u + 1
c
11
, c
12
u
3
u
2
+ 2u 1
14
(v) Riley Polynomials at the component
Crossings Riley Polynomials at each crossing
c
1
, c
2
, c
4
(y 1)
3
c
3
, c
8
, c
9
c
10
y
3
c
5
, c
7
y
3
y
2
+ 2y 1
c
6
, c
11
, c
12
y
3
+ 3y
2
+ 2y 1
15
(vi) Complex Volumes and Cusp Shapes
Solutions to I
u
2
1(vol +
1CS) Cusp shape
u = 0.215080 + 1.307140I
a = 1.32472 + 1.12456I
b = 0.877439 + 0.744862I
4.66906 + 2.82812I 1.84740 3.54173I
u = 0.215080 1.307140I
a = 1.32472 1.12456I
b = 0.877439 0.744862I
4.66906 2.82812I 1.84740 + 3.54173I
u = 0.569840
a = 2.64944
b = 0.754878
0.531480 2.69480
16
III. u-Polynomials
Crossings u-Polynomials at each crossing
c
1
((u 1)
3
)(u
78
+ 44u
77
+ ··· + 17u + 1)
c
2
((u 1)
3
)(u
78
4u
77
+ ··· + 9u 1)
c
3
, c
9
u
3
(u
78
u
77
+ ··· + 4u + 8)
c
4
((u + 1)
3
)(u
78
4u
77
+ ··· + 9u 1)
c
5
, c
7
(u
3
u
2
+ 1)(u
78
2u
77
+ ··· + 4u 1)
c
6
(u
3
+ u
2
+ 2u + 1)(u
78
+ 2u
77
+ ··· 4u
2
1)
c
8
, c
10
u
3
(u
78
21u
77
+ ··· 1232u + 64)
c
11
, c
12
(u
3
u
2
+ 2u 1)(u
78
+ 2u
77
+ ··· 4u
2
1)
17
IV. Riley Polynomials
Crossings Riley Polynomials at each crossing
c
1
((y 1)
3
)(y
78
16y
77
+ ··· 329y + 1)
c
2
, c
4
((y 1)
3
)(y
78
44y
77
+ ··· 17y + 1)
c
3
, c
9
y
3
(y
78
21y
77
+ ··· 1232y + 64)
c
5
, c
7
(y
3
y
2
+ 2y 1)(y
78
38y
77
+ ··· + 8y + 1)
c
6
, c
11
, c
12
(y
3
+ 3y
2
+ 2y 1)(y
78
+ 66y
77
+ ··· + 8y + 1)
c
8
, c
10
y
3
(y
78
+ 67y
77
+ ··· 68864y + 4096)
18