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Background: Symptoms of insomnia, nightmares, and trauma are highly prevalent. However, there are significant barriers to accessing evidence-based treatments for these conditions, leading to poor mental health outcomes.

Objective: This pilot trial evaluated the feasibility of a 4-week, digital self-paced intervention combining cognitive behavioral therapy for insomnia and exposure, relaxation, and rescripting therapy for nightmares in survivors of wildfires from Australia, Canada, and the United States.

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Pancharatnam-Berry (PB) phase modulation leverages the precise linear correspondence between output phase and nanopillar rotation angle, enabling wide application in modulating focal spherical waves. However, the intrinsic material absorption of waveguide structure inevitably brings energy loss within the visible light spectral range, severely limiting focusing efficiency over broad bandwidths under general models of nanopillars. Here, we introduce a dual-coupled metalens composed of an air slot-etched rectangular TiO nanopillar, and the extremely narrow air gap along its long axis of nanopillar can be regarded as a high-aspect-ratio rectangular waveguide for strictly confining the incident light.

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We study the dynamics and stability of soliton optical frequency comb generation in a dissipative, coherently pumped cavity with both second- and third-order nonlinearity. Cavity sweep simulations and linear stability analysis based on path continuation reveal the existence of bistable solitons. These families of solitons represent a continuous transition between a purely quadratic and a Kerr cavity soliton frequency comb.

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The issue of scattering effect is common in imaging and optical 3D measurements, which introduces global illumination into the classical geometrical optics model. Separating the interested information from complex global-direct illumination often poses significant challenges. However, to suppress the global illumination, the conventional polarized modulated method generally requires manual adjustment to obtain multiple signals, which strictly limits the real-time detection and adaptability.

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The vector beam (VB), characterized by the spatially non-uniform distribution of polarization states, shows broad prospects in the photonics field. Recently, the development of metasurfaces offers novel (to the best of our knowledge) opportunities for manipulating VB, yet most efforts lack dynamic control over its polarization order. In this Letter, a general and facile method for dynamically tuning the polarization order of VB is proposed and validated by a silicon-based Moiré metasurface in the visible band.

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