Properties

Label 16.0.10384942254...5184.1
Degree $16$
Signature $[0, 8]$
Discriminant $2^{54}\cdot 7^{8}$
Root discriminant $27.45$
Ramified primes $2, 7$
Class number $4$
Class group $[2, 2]$
Galois group $C_2^2 : C_4$ (as 16T10)

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Show commands for: Magma / SageMath / Pari/GP

magma: R<x> := PolynomialRing(Rationals()); K<a> := NumberField(R![324, 0, -720, 0, 2024, 0, -640, 0, -152, 0, 72, 0, 44, 0, 8, 0, 1]);
 
sage: x = polygen(QQ); K.<a> = NumberField(x^16 + 8*x^14 + 44*x^12 + 72*x^10 - 152*x^8 - 640*x^6 + 2024*x^4 - 720*x^2 + 324)
 
gp: K = bnfinit(x^16 + 8*x^14 + 44*x^12 + 72*x^10 - 152*x^8 - 640*x^6 + 2024*x^4 - 720*x^2 + 324, 1)
 

Normalized defining polynomial

\( x^{16} + 8 x^{14} + 44 x^{12} + 72 x^{10} - 152 x^{8} - 640 x^{6} + 2024 x^{4} - 720 x^{2} + 324 \)

magma: DefiningPolynomial(K);
 
sage: K.defining_polynomial()
 
gp: K.pol
 

Invariants

Degree:  $16$
magma: Degree(K);
 
sage: K.degree()
 
gp: poldegree(K.pol)
 
Signature:  $[0, 8]$
magma: Signature(K);
 
sage: K.signature()
 
gp: K.sign
 
Discriminant:  \(103849422541860250845184=2^{54}\cdot 7^{8}\)
magma: Discriminant(Integers(K));
 
sage: K.disc()
 
gp: K.disc
 
Root discriminant:  $27.45$
magma: Abs(Discriminant(Integers(K)))^(1/Degree(K));
 
sage: (K.disc().abs())^(1./K.degree())
 
gp: abs(K.disc)^(1/poldegree(K.pol))
 
Ramified primes:  $2, 7$
magma: PrimeDivisors(Discriminant(Integers(K)));
 
sage: K.disc().support()
 
gp: factor(abs(K.disc))[,1]~
 
This field is Galois over $\Q$.
This is a CM field.

Integral basis (with respect to field generator \(a\))

$1$, $a$, $a^{2}$, $a^{3}$, $a^{4}$, $a^{5}$, $a^{6}$, $a^{7}$, $\frac{1}{8} a^{8} - \frac{1}{2} a^{7} - \frac{1}{4} a^{4} - \frac{1}{2} a^{2} + \frac{1}{4}$, $\frac{1}{24} a^{9} + \frac{1}{4} a^{5} - \frac{1}{2} a^{3} + \frac{5}{12} a$, $\frac{1}{24} a^{10} + \frac{1}{4} a^{6} - \frac{1}{2} a^{4} + \frac{5}{12} a^{2}$, $\frac{1}{24} a^{11} + \frac{1}{4} a^{7} - \frac{1}{2} a^{5} + \frac{5}{12} a^{3}$, $\frac{1}{168} a^{12} - \frac{1}{14} a^{6} + \frac{5}{12} a^{4} + \frac{3}{14}$, $\frac{1}{168} a^{13} - \frac{1}{14} a^{7} + \frac{5}{12} a^{5} + \frac{3}{14} a$, $\frac{1}{236453616} a^{14} + \frac{172783}{118226808} a^{12} - \frac{28751}{4222386} a^{10} - \frac{123609}{13136312} a^{8} - \frac{27021613}{118226808} a^{6} - \frac{1}{2} a^{5} + \frac{820459}{4222386} a^{4} + \frac{2697347}{59113404} a^{2} - \frac{599301}{6568156}$, $\frac{1}{709360848} a^{15} + \frac{438257}{177340212} a^{13} - \frac{28751}{12667158} a^{11} - \frac{41203}{13136312} a^{9} - \frac{35466385}{354680424} a^{7} - \frac{1}{2} a^{6} - \frac{3285199}{25334316} a^{5} - \frac{56416057}{177340212} a^{3} - \frac{5759995}{19704468} a$

magma: IntegralBasis(K);
 
sage: K.integral_basis()
 
gp: K.zk
 

Class group and class number

$C_{2}\times C_{2}$, which has order $4$

magma: ClassGroup(K);
 
sage: K.class_group().invariants()
 
gp: K.clgp
 

Unit group

magma: UK, f := UnitGroup(K);
 
sage: UK = K.unit_group()
 
Rank:  $7$
magma: UnitRank(K);
 
sage: UK.rank()
 
gp: K.fu
 
Torsion generator:  \( -1 \) (order $2$)
magma: K!f(TU.1) where TU,f is TorsionUnitGroup(K);
 
sage: UK.torsion_generator()
 
gp: K.tu[2]
 
Fundamental units:  Units are too long to display, but can be downloaded with other data for this field from 'Stored data to gp' link to the right
magma: [K!f(g): g in Generators(UK)];
 
sage: UK.fundamental_units()
 
gp: K.fu
 
Regulator:  \( 39114.0652766 \)
magma: Regulator(K);
 
sage: K.regulator()
 
gp: K.reg
 

Galois group

$C_2^2:C_4$ (as 16T10):

magma: GaloisGroup(K);
 
sage: K.galois_group(type='pari')
 
gp: polgalois(K.pol)
 
A solvable group of order 16
The 10 conjugacy class representatives for $C_2^2 : C_4$
Character table for $C_2^2 : C_4$

Intermediate fields

\(\Q(\sqrt{14}) \), \(\Q(\sqrt{2}) \), \(\Q(\sqrt{7}) \), \(\Q(\sqrt{2}, \sqrt{7})\), 4.0.7168.1 x2, 4.0.25088.1 x2, 4.0.100352.1 x2, 4.0.14336.1 x2, 4.4.100352.1, \(\Q(\zeta_{16})^+\), 8.0.10070523904.3, 8.0.40282095616.5, 8.8.40282095616.1, 8.0.161128382464.8 x2, 8.0.3288334336.3 x2

Fields in the database are given up to isomorphism. Isomorphic intermediate fields are shown with their multiplicities.

Sibling fields

Degree 8 siblings: data not computed

Frobenius cycle types

$p$ 2 3 5 7 11 13 17 19 23 29 31 37 41 43 47 53 59
Cycle type R ${\href{/LocalNumberField/3.4.0.1}{4} }^{4}$ ${\href{/LocalNumberField/5.4.0.1}{4} }^{4}$ R ${\href{/LocalNumberField/11.4.0.1}{4} }^{4}$ ${\href{/LocalNumberField/13.4.0.1}{4} }^{4}$ ${\href{/LocalNumberField/17.2.0.1}{2} }^{8}$ ${\href{/LocalNumberField/19.4.0.1}{4} }^{4}$ ${\href{/LocalNumberField/23.2.0.1}{2} }^{8}$ ${\href{/LocalNumberField/29.4.0.1}{4} }^{4}$ ${\href{/LocalNumberField/31.1.0.1}{1} }^{16}$ ${\href{/LocalNumberField/37.4.0.1}{4} }^{4}$ ${\href{/LocalNumberField/41.2.0.1}{2} }^{8}$ ${\href{/LocalNumberField/43.4.0.1}{4} }^{4}$ ${\href{/LocalNumberField/47.1.0.1}{1} }^{16}$ ${\href{/LocalNumberField/53.4.0.1}{4} }^{4}$ ${\href{/LocalNumberField/59.4.0.1}{4} }^{4}$

In the table, R denotes a ramified prime. Cycle lengths which are repeated in a cycle type are indicated by exponents.

magma: p := 7; // to obtain a list of $[e_i,f_i]$ for the factorization of the ideal $p\mathcal{O}_K$:
 
magma: idealfactors := Factorization(p*Integers(K)); // get the data
 
magma: [<primefactor[2], Valuation(Norm(primefactor[1]), p)> : primefactor in idealfactors];
 
sage: p = 7; # to obtain a list of $[e_i,f_i]$ for the factorization of the ideal $p\mathcal{O}_K$:
 
sage: [(e, pr.norm().valuation(p)) for pr,e in K.factor(p)]
 
gp: p = 7; \\ to obtain a list of $[e_i,f_i]$ for the factorization of the ideal $p\mathcal{O}_K$:
 
gp: idealfactors = idealprimedec(K, p); \\ get the data
 
gp: vector(length(idealfactors), j, [idealfactors[j][3], idealfactors[j][4]])
 

Local algebras for ramified primes

$p$LabelPolynomial $e$ $f$ $c$ Galois group Slope content
2Data not computed
$7$7.4.2.1$x^{4} + 35 x^{2} + 441$$2$$2$$2$$C_2^2$$[\ ]_{2}^{2}$
7.4.2.1$x^{4} + 35 x^{2} + 441$$2$$2$$2$$C_2^2$$[\ ]_{2}^{2}$
7.4.2.1$x^{4} + 35 x^{2} + 441$$2$$2$$2$$C_2^2$$[\ ]_{2}^{2}$
7.4.2.1$x^{4} + 35 x^{2} + 441$$2$$2$$2$$C_2^2$$[\ ]_{2}^{2}$