Generation and detection of squeezed states via a synchronously pumped optical parametric oscillator

Fuente: arXiv
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Main Authors: Suerra, Edoardo, Altilia, Samuele, Olivares, Stefano, Ferraro, Alessandro, Canella, Francesco, Giannotti, Dario, Galzerano, Gianluca, Corli, Sebastiano, Prati, Enrico, Cialdi, Simone
Format: Preprint
Published: 2025
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author Suerra, Edoardo
Altilia, Samuele
Olivares, Stefano
Ferraro, Alessandro
Canella, Francesco
Giannotti, Dario
Galzerano, Gianluca
Corli, Sebastiano
Prati, Enrico
Cialdi, Simone
author_facet Suerra, Edoardo
Altilia, Samuele
Olivares, Stefano
Ferraro, Alessandro
Canella, Francesco
Giannotti, Dario
Galzerano, Gianluca
Corli, Sebastiano
Prati, Enrico
Cialdi, Simone
contents A synchronously pumped optical parametric oscillator (SPOPO) operating at 93 MHz is used to generate squeezed states at 1035 nm. The system features a counter-propagating beam at the same wavelength as the quantum state, which simultaneously actively stabilizes the cavity and, after transmission, acts as the local oscillator for homodyne detection. By deriving the local oscillator directly from the SPOPO cavity, the setup establishes an intrinsically excellent spatial mode overlap and high interference visibility, forming a distinctive self-referenced architecture. Two spatial light modulators enable precise spectral shaping of both the pump and the local oscillator in amplitude and phase, allowing investigation of the spectral properties of the generated states. The versatility of the setup further allows exploration of different SPOPO configurations, including regimes with varied finesse and escape efficiency. Representative measurements, including homodyne traces and squeezing levels as functions of pump power and local oscillator bandwidth, demonstrate the performance of the system. Theoretical simulations based on a multimode singular-value-decomposition model reproduce well the measured dependence of squeezing on pump power and LO bandwidth, confirming the accuracy of the description and the robustness of the setup. Measured squeezing levels up to -3.3 dB are achieved, corresponding to -5.7 dB at SPOPO output, evidencing the robustness and versatility of this platform for stable pulsed squeezed-light generation and advanced quantum optical applications.
format Preprint
id arxiv_https___arxiv_org_abs_2510_26414
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Generation and detection of squeezed states via a synchronously pumped optical parametric oscillator
Suerra, Edoardo
Altilia, Samuele
Olivares, Stefano
Ferraro, Alessandro
Canella, Francesco
Giannotti, Dario
Galzerano, Gianluca
Corli, Sebastiano
Prati, Enrico
Cialdi, Simone
Quantum Physics
Optics
A synchronously pumped optical parametric oscillator (SPOPO) operating at 93 MHz is used to generate squeezed states at 1035 nm. The system features a counter-propagating beam at the same wavelength as the quantum state, which simultaneously actively stabilizes the cavity and, after transmission, acts as the local oscillator for homodyne detection. By deriving the local oscillator directly from the SPOPO cavity, the setup establishes an intrinsically excellent spatial mode overlap and high interference visibility, forming a distinctive self-referenced architecture. Two spatial light modulators enable precise spectral shaping of both the pump and the local oscillator in amplitude and phase, allowing investigation of the spectral properties of the generated states. The versatility of the setup further allows exploration of different SPOPO configurations, including regimes with varied finesse and escape efficiency. Representative measurements, including homodyne traces and squeezing levels as functions of pump power and local oscillator bandwidth, demonstrate the performance of the system. Theoretical simulations based on a multimode singular-value-decomposition model reproduce well the measured dependence of squeezing on pump power and LO bandwidth, confirming the accuracy of the description and the robustness of the setup. Measured squeezing levels up to -3.3 dB are achieved, corresponding to -5.7 dB at SPOPO output, evidencing the robustness and versatility of this platform for stable pulsed squeezed-light generation and advanced quantum optical applications.
title Generation and detection of squeezed states via a synchronously pumped optical parametric oscillator
topic Quantum Physics
Optics
url https://arxiv.org/abs/2510.26414