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Main Authors: Liu, Han, Iu, Meng Lon, Hamdash, Noor, Helmy, Amr S.
Format: Preprint
Published: 2024
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Online Access:https://arxiv.org/abs/2406.19991
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_version_ 1866911330246590464
author Liu, Han
Iu, Meng Lon
Hamdash, Noor
Helmy, Amr S.
author_facet Liu, Han
Iu, Meng Lon
Hamdash, Noor
Helmy, Amr S.
contents Optical parametric amplification generates squeezed light in device-specific sets of time-frequency eigenmodes, and it has been widely accepted that detection and utilization of squeezing must comply with this modal constraint. We show that this constraint can be considerably relaxed under the continuous-wave pump and broadband phase-matching approximation, where the modal decomposition is non-unique. Specifically, any time-frequency mode with "self-conjugated" spectral symmetry can approximate a squeezing eigenmode, and partial homodyne detection can herald squeezing in arbitrary time-frequency modes. We demonstrate this using a high-efficiency, low-loss all-fiber source, measuring 4.38 +- 0.11dB and 0.88 +- 0.09 dB squeezing on partially coherent and chaotic self-conjugated modes. Using a bichromatic self-conjugated mode with reduced local-oscillator noise, we achieve 7.50 +- 0.12dB squeezing, which represents the highest level reported for fully guided-wave squeezing sources based on chi(2) and chi(3) nonlinearities.
format Preprint
id arxiv_https___arxiv_org_abs_2406_19991
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Towards Arbitrary Time-frequency Mode Squeezing with Self-conjugated Mode Squeezing in Fiber
Liu, Han
Iu, Meng Lon
Hamdash, Noor
Helmy, Amr S.
Quantum Physics
Optics
Optical parametric amplification generates squeezed light in device-specific sets of time-frequency eigenmodes, and it has been widely accepted that detection and utilization of squeezing must comply with this modal constraint. We show that this constraint can be considerably relaxed under the continuous-wave pump and broadband phase-matching approximation, where the modal decomposition is non-unique. Specifically, any time-frequency mode with "self-conjugated" spectral symmetry can approximate a squeezing eigenmode, and partial homodyne detection can herald squeezing in arbitrary time-frequency modes. We demonstrate this using a high-efficiency, low-loss all-fiber source, measuring 4.38 +- 0.11dB and 0.88 +- 0.09 dB squeezing on partially coherent and chaotic self-conjugated modes. Using a bichromatic self-conjugated mode with reduced local-oscillator noise, we achieve 7.50 +- 0.12dB squeezing, which represents the highest level reported for fully guided-wave squeezing sources based on chi(2) and chi(3) nonlinearities.
title Towards Arbitrary Time-frequency Mode Squeezing with Self-conjugated Mode Squeezing in Fiber
topic Quantum Physics
Optics
url https://arxiv.org/abs/2406.19991