sage:Prec = 100 # Default precision of 100
Q2 = Qp(2, Prec); x = polygen(QQ)
L.<t> = Q2.extension(x^3 + x + 1)
K.<a> = L.extension(x^6 + 4*t^2*x^5 + (4*t^2 + 4)*x^3 + 10)
magma:Prec := 100; // Default precision of 100
Q2 := pAdicField(2, Prec);
K := LocalField(Q2, Polynomial(Q2, [15, 26, 59, 94, 145, 202, 224, 234, 248, 204, 159, 140, 75, 50, 35, 6, 10, 0, 1]));
$( x^{3} + x + 1 )^{6} + 4 x ( x^{3} + x + 1 )^{5} + \left(4 x + 4\right) ( x^{3} + x + 1 )^{3} + 10$
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sage:K.defining_polynomial()
magma:DefiningPolynomial(K);
Fields in the database are given up to isomorphism. Isomorphic
intermediate fields are shown with their multiplicities.
| Galois degree: |
$2304$
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| Galois group: |
$C_2^4:(A_4\times D_6)$ (as 18T366)
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| Inertia group: |
Intransitive group isomorphic to $C_2^5:A_4$
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| Wild inertia group: |
$C_2^7$
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| Galois unramified degree: |
$6$
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| Galois tame degree: |
$3$
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| Galois Artin slopes: |
$[\frac{4}{3}, \frac{4}{3}, \frac{4}{3}, \frac{4}{3}, 2, 2, 3]$
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| Galois Swan slopes: |
$[\frac{1}{3},\frac{1}{3},\frac{1}{3},\frac{1}{3},1,1,2]$
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| Galois mean slope: |
$2.4114583333333335$
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| Galois splitting model: |
$x^{18} + 28 x^{16} + 292 x^{14} + 1754 x^{12} + 9820 x^{10} + 56424 x^{8} + 282328 x^{6} + 1026768 x^{4} + 2109168 x^{2} + 2032344$
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