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Updated: Jan 8, 2026

The Generation of Higher-order Laguerre-Gauss Optical Beams for High-precision Interferometry
Published on: August 12, 2013
Compact squeezed light source for higher-order Hermite-Gaussian modes
Abstract:
Squeezed light is a fundamental nonclassical resource in quantum optics, and considerable progress has been made in its generation and manipulation. Here, we experimentally demonstrate a compact higher-order spatial modes squeezed light source, achieved by integrating second-harmonic generation and optical parametric oscillation within a single doubly resonant cavity. The HG2m,2n pump field, which is essential for the generation of HGm,n mode squeezed states, is produced via internal second-harmonic generation, substantially enhancing both the conversion efficiency and mode purity. With this configuration, we successfully generated squeezed vacuum states in the HG0,0, HG1,0, and HG2,0 modes, achieving squeezing levels of -4.53 ± 0.26 dB, -3.68 ± 0.19 dB, and -2.58 ± 0.08 dB, respectively. This platform provides a viable pathway for scalable, multimode quantum state generation, with broad potential in quantum metrology and quantum communication.
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