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Shigeki Sakai

Publications and source records attributed to Shigeki Sakai.

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AnyGroundBench: A Specialized-Domain Benchmark for Video Grounding in Vision-Language Models

Vision-Language Models (VLMs) have demonstrated immense promise in Spatio-Temporal Video Grounding (STVG). However, current evaluation protocols are largely confined to zero-shot assessments on general, daily-life benchmarks. This creates a critical disconnect from real-world applications in specialized fields, where models inevitably encounter rare visual concepts and complex spatio-temporal dynamics. Since exhaustive pre-training across infinite data distributions is infeasible, the ability to adapt to novel domains is essential. To bridge this gap, we introduce AnyGroundBench, a domain-adaptation benchmark designed to shift the STVG evaluation paradigm from static zero-shot testing to rigorous domain adaptation. Targeting five specialized domains (animal, industry, sports, surgery, and public security), AnyGroundBench pairs newly captured videos such as expert-annotated mouse behaviors with established datasets, unifying them through dense, high-fidelity spatio-temporal annotations. Crucially, the benchmark provides dedicated training subsets to systematically measure domain adaptability. We extensively evaluate 15 state-of-the-art VLMs, assessing their zero-shot generalization and In-Context Learning (ICL) capabilities under practical computational constraints. Ultimately, our findings reveal that current models fail in both zero-shot and ICL-based adaptation when confronted with specialized domains, exposing critical flaws in spatio-temporal reasoning that future research must address.

cs.CV

An extended Kolmogorov-Avrami-Ishibashi (EKAI) model to simulate dynamic characteristics of polycrystalline-ferroelectric-gate field-effect transistors

An extended Kolmogorov-Avrami-Ishibashi (EKAI) model is proposed, which represents dynamic characteristics in polycrystalline ferroelectric films consisting of grains under time-dependent electric fields. The original Kolmogorov-Avrami-Ishibashi (KAI) model described time-varying polarization reversal in a single-crystal film under a constant electric field. The field and the polarization were directed along the film normal. The polarization reversal dynamics were represented by a time-evolution function, c(t), regarding the volume fractions of the downward- and upward-polarization domains under a constant electric field. In the EKAI model, a grain in a polycrystalline ferroelectric film is indexed by l with an angle theta which is the angle between the spontaneous polarization Ps and the film normal. The EKAI model first assumes KAI-like polarization variations under a constant field inside the grain whose angle is tilted by theta. The second assumption is concerned with polarization variation under time-varying electric field. During a time period delta_t from t_now to t_next (=t_now+delta_t), the volume fractions of the downward- and upward-polarization domains changes according to the function c(t) under an electric field at t_now. By combining the derived polarization and an electrostatic potential equation across a gate stacked structure at t_next, an electric field at t_next is derived. Since the electric field and the volume fractions of the downward and upward domains are known at t_next, the calculation at the next delta_t step is possible. This procedure is repeated, and the EKAI model can simulate time-varying polarization reversal phenomena. Good agreement of the numerical results with the experimental indicates that the model is appropriate to simulate dynamic characteristics of FeFETs with polycrystalline ferroelectric films under swept and pulsed gate-voltages.

cond-mat.mtrl-sci