FlexiSpec®

Spectroscopy Fiber Probes & Probe Couplers

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Fibers | Cables | Bundles | Accessories

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News
Latest News
24 July 2026
Discover the Ultimate Fiber Connection for High-Vacuum Optical Setups

When your research or production takes you into extreme environments, maintaining perfect optical transmission should never be a hurdle. At art photonics GmbH, we invite you to explore our FlexiRay® Vacuum Fiber Optic Feedthroughs - engineered to provide a highly flexible, continuous optical path directly into your vacuum or pressurized chambers. Whether you are conducting […]

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17 July 2026
Eliminating Offline Sampling Delays with FlexiSpec® ATR Probes

Are you still waiting on offline lab samples when an in-line ATR probe could give you real-time process control? Transitioning from offline sampling to real-time monitoring remains one of the most significant bottlenecks in Process Analytical Technology (PAT) today. At art photonics GmbH, our FlexiSpec® ATR Probes are engineered to eliminate that delay entirely, bringing […]

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Latest Events
10 June 2026
EPIC Technology Meeting on Photonics for Quantum Technologies | 15 June 2026 | Berlin, Germany

We are happy to welcome attendees of the EPIC Technology Meeting on Photonics for Quantum Technologies to our Berlin headquarters. On Monday, 15 June 2026, as part of the Program A company visits, we open our doors to give you a firsthand look at our production environment. We engineer and manufacture our mid-IR fiber solutions […]

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1 June 2026
CPACT Webinar: Bridging the Gap from the Lab to Real-Time Process Control

Transitioning from offline sampling to real-time, in-line monitoring remains one of the most significant bottlenecks in Process Analytical Technology (PAT) today. When process engineers are forced to wait on delayed lab results, it impacts both efficiency and process optimization. To help address this challenge, art photonics is proud to announce an upcoming webinar hosted by […]

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About Our Company
art photonics GmbH, founded in Berlin in September 1998, is one of the worldwide leaders in development and production of specialty fiber products for a broad spectrum from 300 nm to 16 µm. Unique technologies of Polycrystalline Mid InfraRed (PIR-) fibers and Metal coated Silica fibers are used for assembly of various spectroscopy probes for medical diagnostics and industrial process control, in volume production of fiber for medical and industrial lasers, for different fiber bundles, etc. Since January 2024 art photonics GmbH is a member of NYNOMIC GROUP.
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Fiber Probe for Simultaneous Mid-Infrared and Fluorescence Spectroscopic Analysis

Posted on: 
17 June 2024

We are excited to share one of our latest articles, showcasing the groundbreaking capabilities of our multispectral Combi Probe! This innovative fiber optic design enables simultaneous analysis using both mid-infrared (Mid-IR) and fluorescence spectroscopy, offering unparalleled efficiency in spectroscopic analysis.

What is the Combi Probe?

The Combi Probe is a versatile tool designed for the simultaneous measurement of Mid-IR and fluorescence spectra. This dual-functionality probe combines the strengths of both techniques, providing comprehensive chemical information from a single measurement point.

Why Use Two Spectroscopic Methods?

Utilizing both Mid-IR and fluorescence spectroscopy allows for a more detailed and reliable analysis:

  • Mid-IR Spectroscopy: Offers precise chemical composition analysis at a molecular level, ideal for identifying various chemical bonds and functional groups.
  • Fluorescence Spectroscopy: Excels in detecting specific biomolecules and structural changes within tissues, making it indispensable for applications in biomedical diagnostics.

Real-World Applications

Our recent tests on biological tissues have demonstrated the probe's capability to differentiate between various tissue types with high precision, especially when one modality alone could not achieve this. This advancement is particularly promising for tumor diagnostics, where accurate detection of tumor margins is crucial.

Discover more and read the full article here: Link to the article

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