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Astronomical imaging uses specialized optical systems to capture detailed images of celestial objects such as stars, galaxies, nebulae, and planets. Because these objects emit extremely faint light, astronomical imaging systems rely on high-precision optical components to efficiently collect, transmit, and focus light while minimizing distortion and noise. Key components used in astronomical imaging and telescope optics include optical lenses, mirrors, filters, prisms, and image sensors. These elements improve light collection efficiency, enhance contrast, and isolate specific wavelengths for scientific observation, photometric measurement, and astrophotography. Edmund Optics supports astronomical imaging and telescope system development with a wide range of precision optical components, including astronomy bandpass filters, RKE® eyepieces, TECHSPEC® precision parabolic mirrors, image rotation prisms, large precision achromatic lenses, and fine steering mirrors.

Image Rotation Prisms | 圖像旋轉稜鏡

Image Rotation Prisms | 圖像旋轉稜鏡

Image rotation prisms are used in astronomical imaging systems to correct or manipulate the orientation of images produced by telescopes, which often invert or rotate views due to their optical configurations. Prism designs such as Amici roof, Dove, Schmidt, and half-penta prisms allow astronomers to rotate, invert, or revert images while maintaining optical alignment for cameras, spectrographs, and other instruments.

Polarization Optics | 偏振光學元件

Polarization Optics | 偏振光學元件

Polarization optics control the orientation of light’s electric field, providing powerful capabilities for both computational imaging and astronomical observation. By using components such as polarizers and waveplates to manipulate and measure polarization states, these systems can enhance contrast, reduce glare, and reveal information not accessible through intensity or wavelength alone. In machine vision, this enables improved feature detection and material analysis, while in astronomy it helps scientists study how light interacts with dust, magnetic fields, and planetary atmospheres to better understand celestial environments.

Astronomy Bandpass Filters

天文帶通濾光片

Astronomy Bandpass Filters isolate and measure specific wavelength bands of light emitted by astronomical and celestial objects. Johnson–Bessel filters are commonly used with photomultiplier tubes, while Kron–Cousins filters are well suited for use with silicon-based sensors due to their spectral responsivity.

愛特蒙特光學RKE 精密目鏡

愛特蒙特光學RKE 精密目鏡

TECHSPEC® components are designed, specified, or manufactured by Edmund Optics. TECHSPEC®組件由愛特蒙特光學設計、指定或製造。進一步瞭解

The RKE® line of eyepieces stands out as an industry favorite, known for its long eye relief and an apparent field of view of 45°. To help our customers take full advantage of advanced optical design software, we are pleased to provide complete prescription data for these eyepieces.

精密拋物面反射鏡

精密拋物面反射鏡

TECHSPEC® components are designed, specified, or manufactured by Edmund Optics. TECHSPEC®組件由愛特蒙特光學設計、指定或製造。進一步瞭解

Precision parabolic mirrors are used in telescope systems to focus parallel starlight to a single point without spherical aberration, enabling efficient collection of faint light and sharp astronomical images. TECHSPEC® Precision Parabolic Mirrors offer high surface accuracy and multiple coating options, making them well suited for high-performance astronomical observation and optical system design.

大型精密消色差透鏡

大型精密消色差透鏡

TECHSPEC® components are designed, specified, or manufactured by Edmund Optics. TECHSPEC®組件由愛特蒙特光學設計、指定或製造。進一步瞭解

Large precision achromatic lenses are used in astronomical imaging systems to reduce chromatic aberration by bringing multiple wavelengths of light to the same focal point. This correction improves image sharpness and color accuracy in refracting telescopes and high-resolution imaging systems.

TECHSPEC® Near-Infrared (NIR) Aspheric Lenses

近紅外線 (NIR) 非球面透鏡

TECHSPEC® components are designed, specified, or manufactured by Edmund Optics. TECHSPEC®組件由愛特蒙特光學設計、指定或製造。進一步瞭解

Near-infrared (NIR) aspheric lenses are used in astronomical imaging systems to efficiently focus infrared wavelengths while chromatic aberrations. Their aspheric surfaces improve image quality and light collection efficiency, making them well suited for infrared astronomy, spectroscopy, and low-light detection applications.

 
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