Quantum technology represents the next frontier in science and engineering, exploiting the principles of quantum mechanics for breakthroughs in computing, communication, sensing and cryptography. As a critical component of quantum experiments and devices, lasers are fundamental in controlling quantum systems — from laser cooling and trapping to photon entanglement and Rydberg excitation.
The field of optics and laser science continues to evolve, driving discoveries and applications. By controlling light at subwavelength scales, researchers achieve unprecedented control over optical phenomena, opening new possibilities in nanophotonics — from nonlinear optical characterisation and plasmonics to supercontinuum light generation.
The field of spectroscopy seeks to understand the interaction between light and matter. Tunable lasers are essential tools in this area due to their ability to deliver precise and adjustable wavelengths, supporting techniques from Raman and pump-probe spectroscopy to frequency comb, cavity ring-down, fluorescence and nonlinear spectroscopy.
Tunable lasers have revolutionised modern microscopy by providing the flexibility to precisely control the excitation wavelength, enabling researchers to optimise imaging conditions. From single-molecule and multi-photon microscopy to Raman, time-resolved fluorescence and nonlinear microscopy, our OPO and laser systems facilitate breakthroughs in life sciences and material studies.
Optical communication systems use light to transmit data over optical fibers, enabling high-speed, high-bandwidth data transfer across long distances with minimal signal loss. Continuous-wave (CW) lasers are widely used in optical communication due to their ability to provide a stable and consistent light source, essential for maintaining signal integrity during transmission.
Discover the solutions Radiantis has to offer for your specific scientific or technological needs — our team of technical experts are here to advise.
Professor Romain Quidant
ICFO, Spain
Dr Pier Sazio
University of Southampton, United Kingdom, Senior Research Fellow, Optoelectronics Research Centre
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Radiantis were very flexible with our requirements and perfectly matched to our technical needs and budget. Radiantis OPO has enabled us to carry out advanced optical characterisation of our systems across the UV, Visible and IR, and has proven to be a very reliable and easy-to-use system, delivering high and stable power and fast automated tuning across the complete spectral range. Radiantis team were very friendly and provided a professional and comprehensive user training to key researchers in my lab, which enabled us to operate the OPO successfully and reliably over many years.
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The wide tuning range of our Radiantis OPO system has allowed us to access wavelength regimes that have enabled a number of nonlinear optics experiments that would otherwise not have been possible. Radiantis have been very responsive and any problems have always been dealt with swiftly, with engineers being sent over to our lab for extended visits whenever required.
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