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Cotangent

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bundles

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and

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Viterbo

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Functoriality

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In

...

the

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morning,

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we

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will

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go

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through

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one

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method

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of

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computing

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the

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symplectic

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cohomology

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of

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cotangent

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bundles.

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  1. Show that the unit cotangent bundle is a Liouville domain. Explain the correspondence between closed geodesics and Reeb orbits. State the isomorphism between symplectic cohomology and the homology of the free loop space (Theorem 3.5 in [Seidel]). Give the statement only with
    Latex
    $\mathbb{Z} / 2\mathbb{Z}$

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  1.  coefficients.

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  1. Define

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  1. the

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  1. Morse

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  1. homology

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  1. of

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  1. the

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  1. free

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  1. loop

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  1. space

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  1. following

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  1. Section

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  1. 2

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  1. of

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  1. [Abbondandolo-Schwarz

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  1. ].

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  1. Explain

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  1. the

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  1. Abbondandolo-Schwarz

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  1. construction

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  1. of

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  1. an

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  1. isomorphism

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  1. between

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  1. symplectic

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  1. cohomology

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  1. and

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  1. the

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  1. homology

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  1. of

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  1. the

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  1. free

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  1. loop

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  1. space,

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  1. following

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  1. Section

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  1. 3 of [Abbondandolo-Schwarz

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  1. ].

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  1. Make

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  1. sure

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  1. to

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  1. draw

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  1. the

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  1. pictures

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  1. that

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  1. are

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  1. associated

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  1. to

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  1. these

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  1. maps

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  1. (i.e.

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  1. counting

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  1. pseudo-holomorphic

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  1. half-cylinders

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  1. in

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  1. the

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  1. cotangent

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  1. bundle

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  1. followed

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  1. by

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  1. gradient

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  1. flow

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  1. lines

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  1. in

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  1. the

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  1. base).

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In

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the

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afternoon,

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  1. Define

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  1. the

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  1. notion

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  1. of

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  1. a

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  1. Liouville

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  1. subdomain.

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  1. Give

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  1. examples

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  1. coming

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  1. from

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  1. exact

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  1. Lagrangian

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  1. embeddings,

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  1. and

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  1. from

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  1. Weinstein

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  1. handle

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  1. attachment.

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  1. Explain

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  1. the

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  1. construction

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  1. of

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  1. Section

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  1. 2

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  1. in

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  1. [Viterbo

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  1. ]

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  1. associating

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  1. maps

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  1. on

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  1. symplectic

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  1. cohomology

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  1. to

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  1. Liouville

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  1. subdomains.

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  1. Warning:

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  1. what

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  1. Viterbo denotes 
    Latex
    
    $FH^*$

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  1.  is

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  1. the

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  1. dual

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  1. of

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  1. the

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  1. theory

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  1. Seidel

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  1. denotes 

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  1. Latex

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  1. $SH^*$ 

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  1. . To

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  1. keep

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  1. this

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  1. talk

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  1. consistent

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  1. with

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  1. the

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  1. others,

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  1. you

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  1. should

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  1. dualise

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  1. Viterbo's

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  1. statements.