Timeline for wedge product of second chern class and kahler form on Calabi-Yau 3-folds.
Current License: CC BY-SA 3.0
7 events
when toggle format | what | by | license | comment | |
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Jul 10, 2011 at 9:21 | comment | added | YangMills | I am using the notation from Kobayashi's book "Differential geometry of complex vector bundles", for example (page 12), which is $R(\partial_k, \overline{\partial}_\ell)\partial_i=R^j_{ik\overline{\ell}}\partial_j.$ | |
Jul 8, 2011 at 18:39 | vote | accept | Mohammad Farajzadeh-Tehrani | ||
Jul 8, 2011 at 17:01 | comment | added | Mohammad Farajzadeh-Tehrani | Can you just say what is $R_{ik\bar{l}}^{j}$ in your notation? because in mine that is trivial (in my notattion $R(\frac{\partial}{\partial{z}_i},\frac{\partial}{\partial{\bar{z}}_j}) \frac{\partial}{\partial{z}_k}= \sum R_{i\bar{j}k}^{l} \frac{\partial}{\partial{z}_l}$ ) | |
Jul 8, 2011 at 14:11 | vote | accept | Mohammad Farajzadeh-Tehrani | ||
Jul 8, 2011 at 18:38 | |||||
Jul 8, 2011 at 14:11 | vote | accept | Mohammad Farajzadeh-Tehrani | ||
Jul 8, 2011 at 14:11 | |||||
Jul 8, 2011 at 5:30 | history | edited | YangMills | CC BY-SA 3.0 |
added 15 characters in body; deleted 2 characters in body; added 70 characters in body; added 98 characters in body
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Jul 8, 2011 at 5:23 | history | answered | YangMills | CC BY-SA 3.0 |