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Эта публикация цитируется в 2 научных статьях (всего в 2 статьях)
$q$-Difference Kac–Schwarz Operators in Topological String Theory
Kanehisa Takasakia, Toshio Nakatsub a Department of Mathematics, Kinki University, 3-4-1 Kowakae, Higashi-Osaka, Osaka 577-8502, Japan
b Institute of Fundamental Sciences, Setsunan University, 17-8 Ikeda Nakamachi, Neyagawa, Osaka 572-8508, Japan
Аннотация:
The perspective of Kac–Schwarz operators is introduced to the authors' previous work on the quantum mirror curves of topological string theory in strip geometry and closed topological vertex. Open string amplitudes on each leg of the web diagram of such geometry can be packed into a multi-variate generating function. This generating function turns out to be a tau function of the KP hierarchy. The tau function has a fermionic expression, from which one finds a vector $|W\rangle$ in the fermionic Fock space that represents a point $W$ of the Sato Grassmannian. $|W\rangle$ is generated from the vacuum vector $|0\rangle$ by an operator $g$ on the Fock space. $g$ determines an operator $G$ on the space $V = \mathbb{C}((x))$ of Laurent series in which $W$ is realized as a linear subspace. $G$ generates an admissible basis $\{\Phi_j(x)\}_{j=0}^\infty$ of $W$. $q$-difference analogues $A$, $B$ of Kac–Schwarz operators are defined with the aid of $G$. $\Phi_j(x)$'s satisfy the linear equations $A\Phi_j(x) = q^j\Phi_j(x)$, $B\Phi_j(x) = \Phi_{j+1}(x)$. The lowest equation $A\Phi_0(x) = \Phi_0(x)$ reproduces the quantum mirror curve in the authors' previous work.
Ключевые слова:
topological vertex; mirror symmetry; quantum curve; $q$-difference equation; KP hierarchy; Kac–Schwarz operator.
Поступила: 8 сентября 2016 г.; в окончательном варианте 17 февраля 2017 г.; опубликована 21 февраля 2017 г.
Образец цитирования:
Kanehisa Takasaki, Toshio Nakatsu, “$q$-Difference Kac–Schwarz Operators in Topological String Theory”, SIGMA, 13 (2017), 009, 28 pp.
Образцы ссылок на эту страницу:
https://www.mathnet.ru/rus/sigma1209 https://www.mathnet.ru/rus/sigma/v13/p9
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