Properties

Label 264.48.0-264.ec.2.14
Level $264$
Index $48$
Genus $0$
Cusps $6$
$\Q$-cusps $2$

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Invariants

Level: $264$ $\SL_2$-level: $8$
Index: $48$ $\PSL_2$-index:$24$
Genus: $0 = 1 + \frac{ 24 }{12} - \frac{ 0 }{4} - \frac{ 0 }{3} - \frac{ 6 }{2}$
Cusps: $6$ (of which $2$ are rational) Cusp widths $1^{2}\cdot2\cdot4\cdot8^{2}$ Cusp orbits $1^{2}\cdot2^{2}$
Elliptic points: $0$ of order $2$ and $0$ of order $3$
$\Q$-gonality: $1$
$\overline{\Q}$-gonality: $1$
Rational cusps: $2$
Rational CM points: none

Other labels

Cummins and Pauli (CP) label: 8I0

Level structure

$\GL_2(\Z/264\Z)$-generators: $\begin{bmatrix}71&54\\130&43\end{bmatrix}$, $\begin{bmatrix}101&120\\170&251\end{bmatrix}$, $\begin{bmatrix}110&5\\211&152\end{bmatrix}$, $\begin{bmatrix}144&185\\47&66\end{bmatrix}$, $\begin{bmatrix}233&254\\220&131\end{bmatrix}$
Contains $-I$: no $\quad$ (see 264.24.0.ec.2 for the level structure with $-I$)
Cyclic 264-isogeny field degree: $48$
Cyclic 264-torsion field degree: $3840$
Full 264-torsion field degree: $20275200$

Models

This modular curve is isomorphic to $\mathbb{P}^1$.

Rational points

This modular curve has infinitely many rational points but none with conductor small enough to be contained within the database of elliptic curves over $\Q$.

Modular covers

This modular curve minimally covers the modular curves listed below.

Covered curve Level Index Degree Genus Rank
24.24.0-8.n.1.7 $24$ $2$ $2$ $0$ $0$
88.24.0-8.n.1.6 $88$ $2$ $2$ $0$ $?$

This modular curve is minimally covered by the modular curves in the database listed below.

Covering curve Level Index Degree Genus
264.96.0-264.cw.1.14 $264$ $2$ $2$ $0$
264.96.0-264.cz.1.6 $264$ $2$ $2$ $0$
264.96.0-264.da.2.10 $264$ $2$ $2$ $0$
264.96.0-264.db.1.12 $264$ $2$ $2$ $0$
264.96.0-264.de.1.14 $264$ $2$ $2$ $0$
264.96.0-264.dh.2.6 $264$ $2$ $2$ $0$
264.96.0-264.dj.2.12 $264$ $2$ $2$ $0$
264.96.0-264.dk.2.12 $264$ $2$ $2$ $0$
264.96.0-264.dr.2.6 $264$ $2$ $2$ $0$
264.96.0-264.du.1.4 $264$ $2$ $2$ $0$
264.96.0-264.dw.2.10 $264$ $2$ $2$ $0$
264.96.0-264.dx.1.12 $264$ $2$ $2$ $0$
264.96.0-264.dz.1.8 $264$ $2$ $2$ $0$
264.96.0-264.eg.2.10 $264$ $2$ $2$ $0$
264.96.0-264.ek.2.12 $264$ $2$ $2$ $0$
264.96.0-264.el.2.12 $264$ $2$ $2$ $0$
264.144.4-264.np.2.30 $264$ $3$ $3$ $4$
264.192.3-264.pi.2.29 $264$ $4$ $4$ $3$