Broadband spectroscopy and interferometry with undetected photons at strong parametric amplification
arXiv:2309.08218 · doi:10.1002/qute.202300299
Abstract
Nonlinear interferometry with entangled photons allows for characterizing a sample without detecting the photons interacting with it. This method enables highly sensitive optical sensing in the wavelength regions where efficient detectors are still under development. Recently, nonlinear interferometry has been applied to interferometric measurement techniques with broadband light sources, such as Fourier-transform infrared spectroscopy and infrared optical coherence tomography. However, they were demonstrated with photon pairs produced through spontaneous parametric down-conversion (SPDC) at a low parametric gain, where the average number of photons per mode is much smaller than one. The regime of high-gain SPDC offers several important advantages, such as the amplification of light after its interaction with the sample and a large number of photons per mode at the interferometer output. In this study, we demonstrate broadband spectroscopy and high-resolution optical coherence tomography with undetected photons generated via high-gain SPDC in an aperiodically poled lithium niobate crystal. To prove the principle, we demonstrate reflective Fourier-transform near-infrared spectroscopy with a spectral bandwidth of 17 THz and optical coherence tomography with an axial resolution of 11 μm.
23 pages, 14 figures
References in corpus (10)
- Hyperspectral Infrared Microscopy With Visible Light
- Upconversion time-stretch infrared spectroscopy
- Nonlinear interferometer for Fourier-transform mid-infrared gas spectroscopy using near-infrared detection
- Fourier transform infrared spectroscopy with visible light
- Quantum Fourier-transform infrared spectroscopy in the fingerprint region
- Ultra-broadband SPDC for spectrally far separated photon pairs
- Mid-Infrared Cross-Comb Spectroscopy
- Generation of monocycle squeezed light in chirped quasi-phase-matched nonlinear crystals
- High resolution mid-infrared optical coherence tomography with kHz line rate
- A multimodal laser-scanning nonlinear optical microscope with a rapid broadband Fourier-transform coherent Raman modality
Cited by in corpus (4)
- Advances in quantum imaging
- Fourier-transform infrared spectroscopy with undetected photons from high-gain spontaneous parametric down-conversion
- Few-mode squeezing in type-I parametric downconversion by complete group velocity matching
- Low-coherence interferometry with undetected mid-infrared photons in the high-gain regime