Highly efficient coherent amplification of zero-field spin waves in YIG nano-waveguides

Fuente: arXiv
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Main Authors: Nikolaev, K. O., Lake, S. R., Mohapatra, B. Das, Schmidt, G., Demokritov, S. O., Demidov, V. E.
Format: Preprint
Published: 2025
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author Nikolaev, K. O.
Lake, S. R.
Mohapatra, B. Das
Schmidt, G.
Demokritov, S. O.
Demidov, V. E.
author_facet Nikolaev, K. O.
Lake, S. R.
Mohapatra, B. Das
Schmidt, G.
Demokritov, S. O.
Demidov, V. E.
contents Transmission and processing of information at the nanoscale using spin waves and their quanta - magnons, offers numerous advantages and opportunities that make it a promising next-generation technology for integrated electronics. The main challenges that still need to be addressed to ensure high competitiveness of magnonic devices include finding ways to efficiently amplify spin waves in nanostructures and developing nanocircuits that can operate without the need for an external bias magnetic field. Here we demonstrate how these two challenges can be solved using nano-waveguides fabricated from a low-loss magnetic insulator. We show that by using local parametric pumping with a power of only a few milliwatts, one can achieve coherent amplification of spin-wave pulses by more than two orders of magnitude at zero bias magnetic field. Our results provide a simple solution to problems that have long prevented the implementation of efficient integrated magnonic circuits.
format Preprint
id arxiv_https___arxiv_org_abs_2507_19051
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Highly efficient coherent amplification of zero-field spin waves in YIG nano-waveguides
Nikolaev, K. O.
Lake, S. R.
Mohapatra, B. Das
Schmidt, G.
Demokritov, S. O.
Demidov, V. E.
Mesoscale and Nanoscale Physics
Applied Physics
Transmission and processing of information at the nanoscale using spin waves and their quanta - magnons, offers numerous advantages and opportunities that make it a promising next-generation technology for integrated electronics. The main challenges that still need to be addressed to ensure high competitiveness of magnonic devices include finding ways to efficiently amplify spin waves in nanostructures and developing nanocircuits that can operate without the need for an external bias magnetic field. Here we demonstrate how these two challenges can be solved using nano-waveguides fabricated from a low-loss magnetic insulator. We show that by using local parametric pumping with a power of only a few milliwatts, one can achieve coherent amplification of spin-wave pulses by more than two orders of magnitude at zero bias magnetic field. Our results provide a simple solution to problems that have long prevented the implementation of efficient integrated magnonic circuits.
title Highly efficient coherent amplification of zero-field spin waves in YIG nano-waveguides
topic Mesoscale and Nanoscale Physics
Applied Physics
url https://arxiv.org/abs/2507.19051