Properties

Label 2.2.152.1-32.1-f1
Base field \(\Q(\sqrt{38}) \)
Conductor norm \( 32 \)
CM no
Base change no
Q-curve yes
Torsion order \( 1 \)
Rank \( 1 \)

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Base field \(\Q(\sqrt{38}) \)

Generator \(a\), with minimal polynomial \( x^{2} - 38 \); class number \(1\).

sage: R.<x> = PolynomialRing(QQ); K.<a> = NumberField(R([-38, 0, 1]))
 
gp: K = nfinit(Polrev([-38, 0, 1]));
 
magma: R<x> := PolynomialRing(Rationals()); K<a> := NumberField(R![-38, 0, 1]);
 

Weierstrass equation

\({y}^2={x}^{3}-a{x}^{2}+\left(740a-4549\right){x}-28481a+175560\)
sage: E = EllipticCurve([K([0,0]),K([0,-1]),K([0,0]),K([-4549,740]),K([175560,-28481])])
 
gp: E = ellinit([Polrev([0,0]),Polrev([0,-1]),Polrev([0,0]),Polrev([-4549,740]),Polrev([175560,-28481])], K);
 
magma: E := EllipticCurve([K![0,0],K![0,-1],K![0,0],K![-4549,740],K![175560,-28481]]);
 

This is a global minimal model.

sage: E.is_global_minimal_model()
 

Invariants

Conductor: \((-4a-24)\) = \((-a-6)^{5}\)
sage: E.conductor()
 
gp: ellglobalred(E)[1]
 
magma: Conductor(E);
 
Conductor norm: \( 32 \) = \(2^{5}\)
sage: E.conductor().norm()
 
gp: idealnorm(ellglobalred(E)[1])
 
magma: Norm(Conductor(E));
 
Discriminant: \((-64)\) = \((-a-6)^{12}\)
sage: E.discriminant()
 
gp: E.disc
 
magma: Discriminant(E);
 
Discriminant norm: \( 4096 \) = \(2^{12}\)
sage: E.discriminant().norm()
 
gp: norm(E.disc)
 
magma: Norm(Discriminant(E));
 
j-invariant: \( -8000 \)
sage: E.j_invariant()
 
gp: E.j
 
magma: jInvariant(E);
 
Endomorphism ring: \(\Z\)
Geometric endomorphism ring: \(\Z\) (no potential complex multiplication)
sage: E.has_cm(), E.cm_discriminant()
 
magma: HasComplexMultiplication(E);
 
Sato-Tate group: $\mathrm{SU}(2)$

Mordell-Weil group

Rank: \(1\)
Generator $\left(7 a - 41 : 61 a - 376 : 1\right)$
Height \(0.86903860224387748630369075133293030433\)
Torsion structure: trivial
sage: T = E.torsion_subgroup(); T.invariants()
 
gp: T = elltors(E); T[2]
 
magma: T,piT := TorsionSubgroup(E); Invariants(T);
 

BSD invariants

Analytic rank: \( 1 \)
sage: E.rank()
 
magma: Rank(E);
 
Mordell-Weil rank: \(1\)
Regulator: \( 0.86903860224387748630369075133293030433 \)
Period: \( 12.571592721531504213169672534959341053 \)
Tamagawa product: \( 2 \)
Torsion order: \(1\)
Leading coefficient: \( 3.5446027348056509928002100776819961424 \)
Analytic order of Ш: \( 1 \) (rounded)

Local data at primes of bad reduction

sage: E.local_data()
 
magma: LocalInformation(E);
 
prime Norm Tamagawa number Kodaira symbol Reduction type Root number ord(\(\mathfrak{N}\)) ord(\(\mathfrak{D}\)) ord\((j)_{-}\)
\((-a-6)\) \(2\) \(2\) \(III^{*}\) Additive \(-1\) \(5\) \(12\) \(0\)

Galois Representations

The mod \( p \) Galois Representation has maximal image for all primes \( p < 1000 \) except those listed.

prime Image of Galois Representation
\(3\) 3Nn

Isogenies and isogeny class

This curve has no rational isogenies. Its isogeny class 32.1-f consists of this curve only.

Base change

This elliptic curve is a \(\Q\)-curve.

It is not the base change of an elliptic curve defined over any subfield.