Persona:
Guimpel, Julio

dc.date.accessioned2025-06-30T18:31:57Z
dc.date.accessioned2025-07-23T20:50:36Z
dc.date.available2025-06-30T18:31:57Z
dc.date.available2025-07-23T20:50:36Z
dc.descriptionActualmente jubilado, pero aún como investigador consultor de la CNEA, soy investigador experimental en Física de la Materia Condensada en el Laboratorio de Bajas Temperaturas del Centro Atómico Bariloche y Profesor Titular del Instituto Balseiro. Tras graduarme en el Instituto Balseiro en 1981, obtuve mi doctorado en Física en la misma institución en 1987, bajo la dirección del Prof. Francisco de la Cruz. Entre 1989 y 1992, realicé una estancia posdoctoral en el Laboratorio de Películas Delgadas, dirigido por el Prof. Ivan K. Schuller, en la UCSD-San Diego. Posteriormente, regresé al Laboratorio de Bajas Temperaturas, donde permanezco desde entonces. Como investigador, mi principal interés es la física de películas, superredes y materiales nanoestructurados. Estos materiales de ingeniería artificial no solo han transformado nuestro estilo de vida gracias a su uso en la industria microelectrónica, sino que también han demostrado ser fascinantes para la investigación básica. La capacidad de diseñar un tamaño de muestra con longitudes comparables a las longitudes características de los fenómenos magnéticos, superconductores o de transporte ha llevado al descubrimiento de muchos efectos nuevos. Presently retired, but still working as CNEA consultant researcher, I am an experimental Condensed Matter Physics researcher at the Low Temperature Lab of the Centro Atómico Bariloche and a Profesor Titular at the Instituto Balseiro. After graduating at the Instituto Balseiro in 1981, I got my PhD in Physics at the same institution in 1987, under the direction of Prof. Francisco de la Cruz. Between 1989 and 1992, I attended a posdoctoral stay at the Thin Films lab directed by Prof. Ivan K. Schuller, at UCSD-San Diego. After I returned to teh Low Temperature Lab, where I stayed since then. As a resercher, my main interest is in the physics of films, superlattices and nanostructures materials. Not only have these artificially engineered materials transformed our lifestyles through their use in the microelectronic industry, but they also have proven fascinating for basic research. The ability of engineering a sample size to lengths comparable to those of the characteristic lengths of magnetic, superconducting or transport phenomena has led to the discovery of many new effects.
dc.identifier.urihttps://nuclea.cnea.gob.ar/handle/20.500.12553/6846
dc.subjectFísica Experimental de la Materia Condensada
dc.subjectExperimental Condensed Matter Physics
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