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Mathematics > Symplectic Geometry

Title: Remarks on $J$-tame inflation

Abstract: We give a complete and self-contained exposition of the $J$-tame inflation lemma: Given any tame almost complex structure $J$ on a symplectic $4$-manifold $(M,\omega)$, and given any compact, embedded, $J$-holomorphic submanifold $Z$, it is always possible to construct a deformation of symplectic forms $\omega_t$ in classes $[\omega_t]=[\omega]+t\mathrm{PD}{Z}$, for $0\leq t$ less than an upper bound $0<T$ that only depends on the self-intersection $Z\cdot Z$. The original proofs of this fact make the unwarranted assumption that one can find a family of normal planes along $Z$ that is both $J$ invariant and $\omega$-orthogonal to $TZ$ -- which amounts, in effect, to assuming the compatibility of $J$ and $\omega$ along $Z$. We explain how the original constructions can be adapted to avoid this assumption when $Z$ has nonpositive self-intersection, and we discuss the difficulties with this line of argument in general to establish the full inflation when $Z$ has positive self-intersection. We overcome this problem by proving a `preparation lemma', which states that prior to inflation, one can isotop $\omega$ within its cohomology class to a new form that still tames $J$ and which is compatible with $J$ along the submanifold $Z$.
Comments: Initial submission. Comments welcome. 20 pages
Subjects: Symplectic Geometry (math.SG)
MSC classes: Primary 53D35, Secondary 57R17, 53C15, 57R52
Cite as: arXiv:2403.19110 [math.SG]
  (or arXiv:2403.19110v1 [math.SG] for this version)

Submission history

From: Martin Pinsonnault [view email]
[v1] Thu, 28 Mar 2024 03:06:14 GMT (28kb)

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