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Dive into the research topics where Maxime Malnou is active.

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Featured researches published by Maxime Malnou.


Proceedings of SPIE | 2016

Artificial ice using superconducting vortices(Conference Presentation)

Juan Trastoy Quintela; Maxime Malnou; C. Ulysse; R. Bernard; N. Bergeal; G. Faini; J. Lesueur; J. Briatico; Javier E. Villegas

We use magnetic flux quanta (superconducting vortices) on artificial energy landscapes (pinning arrays) to create a new type of artificial ice. This vortex ice shows unusual temperature effects that offer new possibilities in the study of ice systems. We have investigated the matching of the flux lattice to pinning arrays that present geometrical frustration. The pinning arrays are fabricated on YBCO films using masked O+ ion irradiation. The details of the magneto-resistance imply that the flux lattice organizes into a vortex ice. The absence of history-dependent effects suggests that the vortex ice is highly ordered. Due to the technique used for the artificial energy landscape fabrication, we have the ability to change the pinning array geometry using temperature as a control knob. In particular we can switch the geometrical frustration on and off, which opens the door to performing a new type of annealing absent in other artificial ice systems. * Work supported by the French ANR “MASTHER”, and the Fundación Barrié (Galicia, Spain)


Nature Nanotechnology | 2014

Freezing and thawing of artificial ice by thermal switching of geometric frustration in magnetic flux lattices

Juan Trastoy; Maxime Malnou; C. Ulysse; R. Bernard; N. Bergeal; G. Faini; J. Lesueur; J. Briatico; Javier E. Villegas


publisher | None

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arXiv: Quantum Physics | 2018

Squeezed vacuum used to accelerate the search for a weak classical signal

Maxime Malnou; Daniel Palken; B. M. Brubaker; Leila R. Vale; G. C. Hilton; K. W. Lehnert


Superconductor Science and Technology | 2018

High-temperature superconducting nano-meanders made by ion irradiation

P Amari; C. Feuillet-Palma; A Jouan; François Couëdo; N Bourlet; E Géron; Maxime Malnou; L Méchin; Aleksei Sharafiev; J. Lesueur; N. Bergeal


Physical review applied | 2018

Optimal Operation of a Josephson Parametric Amplifier for Vacuum Squeezing

Maxime Malnou; Daniel Palken; Leila R. Vale; G. C. Hilton; K. W. Lehnert


Physical Review D | 2018

Results from phase 1 of the HAYSTAC microwave cavity axion experiment

L. Zhong; S. Al Kenany; Kelly Backes; B. M. Brubaker; S. B. Cahn; G. Carosi; Y. V. Gurevich; W. F. Kindel; S. K. Lamoreaux; K. W. Lehnert; Samantha M. Lewis; Maxime Malnou; R.H. Maruyama; Daniel Palken; Nicholas M. Rapidis; J. R. Root; Maria Simanovskaia; T.M. Shokair; D.H. Speller; I. Urdinaran; K. van Bibber


Bulletin of the American Physical Society | 2018

Demonstration of Improved Sensitivity in Recovering a Displaced Cavity State with Josephson Parametric Amplifiers

Maxime Malnou; Daniel Palken; Leila R. Vale; G. C. Hilton; K. W. Lehnert


Bulletin of the American Physical Society | 2018

Experimental demonstration of enhancement in sensitivity to axionic dark matter using a squeezed state receiver

Daniel Palken; Maxime Malnou; Leila R. Vale; G. C. Hilton; K. W. Lehnert


arXiv: Superconductivity | 2017

Ion-irradiated YBa

A. Sharafiev; Maxime Malnou; C. Feuillet-Palma; C. Ulysse; Pascal Febvre; J. Lesueur; N. Bergeal

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J. Lesueur

Centre national de la recherche scientifique

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N. Bergeal

Centre national de la recherche scientifique

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K. W. Lehnert

University of Colorado Boulder

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C. Ulysse

Centre national de la recherche scientifique

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G. C. Hilton

National Institute of Standards and Technology

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Leila R. Vale

National Institute of Standards and Technology

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G. Faini

Centre national de la recherche scientifique

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Pascal Febvre

Centre national de la recherche scientifique

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J. Briatico

Centre national de la recherche scientifique

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