$\mathrm{C}_{2}$ in dimension 3
- holonomy group
- $\mathrm{C}_{2}$, order $2$, SmallGroup $[2,1]$ · character table
- tangent representation $\rho$
- $\rho(g_{1}) = \operatorname{diag}(1, 1, -1)$
- order of $\omega_X$
- 2
- number of moduli
- 5
- irregularity $q = \dim \operatorname{Aut}^0(X)$
- 2
- Albanese
- the Albanese variety has dimension $2$; the general fiber has dimension $1$ and is an elliptic curve (details)
- $\mathbf{D}^{\mathrm{b}}(X)$
- indecomposable
- Hochschild cohomology $\dim \mathrm{HH}^\bullet$
- $(1, 4, 7, 8, 7, 4, 1)$
Hodge diamond
1
2 2
1 5 1
0 4 4 0
1 5 1
2 2
1
2 2
1 5 1
0 4 4 0
1 5 1
2 2
1
polyvector fields $\mathrm{H}^q(X,\bigwedge^p T_X)$
1
22
151
0440
151
22
1
22
151
0440
151
22
1
twisted Hodge numbers $\mathrm{h}^{p,q}(X,\omega_X^{\otimes j})$
Since $\operatorname{ord} \omega_X = 2$, the twists by powers of the canonical bundle form a finite package of $2$ diamonds (explained).
$\omega_X^{\otimes 0}$
1
22
151
0440
151
22
1
22
151
0440
151
22
1
$\omega_X^{\otimes 1}$
0
11
242
1551
242
11
0
11
242
1551
242
11
0
References
- K. Uchida, H. Yoshihara, Discontinuous groups of affine transformations of $\mathbb{C}^3$, Tôhoku Math. J. (2) 28 (1976) 89–94. MR400271 doi
- H. Lange, Hyperelliptic varieties, Tôhoku Math. J. (2) 53 (2001) 491–510. MR1862215 doi
- F. Catanese, A. Demleitner, The classification of hyperelliptic threefolds, Groups Geom. Dyn. 14 (2020) 1447–1454. MR4186481 doi
- F. Catanese, A. Demleitner, Hyperelliptic threefolds with group $\mathrm{D}_4$. arXiv:1805.01835
- P. Belmans, A. Demleitner, P. Núñez, The Albanese morphism for hyperelliptic varieties, Indag. Math. (N.S.) 37 (2026) 1450–1475. MR5103244 doi