A full degree-of-freedom spatiotemporal light modulator
Panuski et al. demonstrate a programmable photonic crystal cavity array, enabling the spatiotemporal control of a 64 resonator, two-dimensional spatial light modulator with nanosecond-
Using a single spatial light modulator, our approach enables the full control of both the spatial and spectral properties of an ultrashort pulse transmitted through the medium. We demonstrate spatiote...
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Panuski et al. demonstrate a programmable photonic crystal cavity array, enabling the spatiotemporal control of a 64 resonator, two-dimensional spatial light modulator with nanosecond-
Considering the feasibility of nanoimprinting, this module paves the way for spectral imaging in low‐light conditions and on‐site scenarios such as tongue diagnosis and food quality
To that end, in this work, we propose a Spatio-Temporal Multi-agent Reinforcement Learning (STMARL) framework for multi-intersection traffic light control. Specifically, we first construct a directional traffic
Researchers from the University of California, San Francisco, used the phytochrome signaling network of plants to develop a genetically encoded light-controlled system for fine spatial
This work can support integrated-on-chip solutions for spatiotemporal optical control, directly affecting emerging applications such as solid-state light detection and ranging (LIDAR), three
Thus, comparative analyses among different methods to precise control of the spatiotemporal CRISPR/Cas9 gene editing activity are needed.
There are already well-established ways to boost light-matter interaction through the engineering of plasmonic and Mie-style resonances in
Harnessing the full complexity of optical fields requires complete control of all degrees-of-freedom within a region of space and time — an open goal for present-day spatial light modulators (SLMs), active
The high spatial and temporal resolution of light control allows this module to function as a novel analytical tool,in which highly complex spatial or temporal patterns can be used to drive a process.
Optogenetic tools are based on genetically encoded light-sensing proteins facilitating the precise spatiotemporal control of signal transduction pathways and cell fate decisions in the absence
Light is a powerful tool for controlling biological processes. Here, the authors demonstrate its use to modulate inhibitor activity and diffusion, enabling precise control of cell
Here the authors propose a mechanism for direct space-time manipulation of ultrafast light field and experimentally demonstrate the generation of a spatiotemporally coupling light spring
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To replace the spatial attention module in CBAM and offer a suitable scheme of channel and spatial attention modules, this paper proposes one Spatio-temporal Sharpening Attention
The spatiotemporal control systems in eukaryotes are mainly engineered to fulfill two functions: metabolic control and metabolic storage. (a) Methanol-induced self-assembly of enzymes
This strategy not only enhances PROTAC stability and bioavailability but also leverages the optical and thermal properties of gold nanoparticles to enable light- or temperature-controlled
Within the bandwidth, spatial and temporal variations of the transmitted field are decoupled for the eigenstates, enabling a global spatio-temporal control of pulse transmission through complex media.
The spectral dispersion of ultrashort pulses allows the simultaneous focusing of light in both space and time, which creates so-called spatiotemporal foci. Such space–time coupling may be
They offer a high degree of flexibility and control over the properties of light, enabling the creation of complex optical fields and patterns. With their high speed, high resolution, and flexibility,
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Spatiotemporal modulation of light in free space with sufficiently high space-bandwidth products is critical for free-space optical systems. Enhancing this performance metric in spatial light
Spatial control of the applied elec- tric field, on one or two dimensions, offers the ability to spatially modulate the phase of an incident optical wave. The latter is referred in the following as the “readout
Using a single spatial light modulator, our approach enables the full control of both the spatial and spectral properties of an ultrashort pulse transmitted through the medium. We
The authors demonstrate mitigation of both chromatic and modal dispersion in multimode optical fibers via spatiotemporal tailoring of ultrashort light pulses. This holds potential for applications
Its wide range of applications, from research to industrial use, include numerous customizations realized with Santec ''s proprietary Spatial Light Modulator. By