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2025

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Schott

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From its unique corporate structure and pioneering spirit to its innovative culture and sustainable development strategy, Schott's people constantly push the boundaries of glass and materials development to achieve groundbreaking scientific and technological advancements. Together, we strive to create change for businesses, industries, and people.

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LATEST NEWS

2025-07-12

Hyperspectral channel density on-chip diffractive speckle spectrometer

Driven by the demand for high-performance miniature spectrometers, research on chip-scale spectrometers is continuously breaking through towards high integration, high resolution, and large bandwidth. This work proposes a silicon-based on-chip spectrometer based on cascaded disordered metasurfaces. Through various on-chip wavefront modulation mechanisms, high-spectral speckle is generated, which expands the number of spectral channels with a compact chip size, thus achieving extremely high on-chip spectral channel density and providing an effective means for achieving high-resolution, large-bandwidth spectral detection.

2025-07-14

Ultrasensitive room-temperature extreme photoelectric response achieved

This study, for the first time, achieved the control of ultra-sensitive photoelectric response optimized for room temperature conditions through electromagnetically induced potential well effects and exciton insulator phase transition characteristics.

2025-07-15

Preparation and research progress of glass scintillators for X-ray imaging

Developing suitable host materials with strong X-ray absorption coefficient, good exciton transport efficiency, low phonon energy, and high lanthanide ion solubility remains a cutting-edge research direction in the field of X-ray detection.

2025-07-16

Quantum logic gates based on single-piece gradient metasurface

In today's rapidly developing quantum information technology, realizing efficient and highly integrated quantum logic gates is one of the key challenges in the field of integrated quantum optics.

2025-07-17

Preparation and performance study of epoxy-thiol high-contrast color polymer dispersed liquid crystals

Polymer Dispersed Liquid Crystal (PDLC) is a smart material consisting of micron-sized liquid crystal droplets dispersed in a polymer matrix.