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High-Field High-Repetition-Rate Sources for the Coherent THz Control of Matter

Ultrashort flashes of THz light with low photon energies of a few meV, but strong electric or magnetic field transients have recently been employed to prepare various fascinating nonequilibrium states in matter. Here we present a new class of sources based on superradiant enhancement of radiation fr...

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Autores principales: Green, B., Kovalev, S., Asgekar, V., Geloni, G., Lehnert, U., Golz, T., Kuntzsch, M., Bauer, C., Hauser, J., Voigtlaender, J., Wustmann, B., Koesterke, I., Schwarz, M., Freitag, M., Arnold, A., Teichert, J., Justus, M., Seidel, W., Ilgner, C., Awari, N., Nicoletti, D., Kaiser, S., Laplace, Y., Rajasekaran, S., Zhang, L., Winnerl, S., Schneider, H., Schay, G., Lorincz, I., Rauscher, A. A., Radu, I., Mährlein, S., Kim, T. H., Lee, J. S., Kampfrath, T., Wall, S., Heberle, J., Malnasi-Csizmadia, A., Steiger, A., Müller, A. S., Helm, M., Schramm, U., Cowan, T., Michel, P., Cavalleri, A., Fisher, A. S., Stojanovic, N., Gensch, M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4770290/
https://www.ncbi.nlm.nih.gov/pubmed/26924651
http://dx.doi.org/10.1038/srep22256
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author Green, B.
Kovalev, S.
Asgekar, V.
Geloni, G.
Lehnert, U.
Golz, T.
Kuntzsch, M.
Bauer, C.
Hauser, J.
Voigtlaender, J.
Wustmann, B.
Koesterke, I.
Schwarz, M.
Freitag, M.
Arnold, A.
Teichert, J.
Justus, M.
Seidel, W.
Ilgner, C.
Awari, N.
Nicoletti, D.
Kaiser, S.
Laplace, Y.
Rajasekaran, S.
Zhang, L.
Winnerl, S.
Schneider, H.
Schay, G.
Lorincz, I.
Rauscher, A. A.
Radu, I.
Mährlein, S.
Kim, T. H.
Lee, J. S.
Kampfrath, T.
Wall, S.
Heberle, J.
Malnasi-Csizmadia, A.
Steiger, A.
Müller, A. S.
Helm, M.
Schramm, U.
Cowan, T.
Michel, P.
Cavalleri, A.
Fisher, A. S.
Stojanovic, N.
Gensch, M.
author_facet Green, B.
Kovalev, S.
Asgekar, V.
Geloni, G.
Lehnert, U.
Golz, T.
Kuntzsch, M.
Bauer, C.
Hauser, J.
Voigtlaender, J.
Wustmann, B.
Koesterke, I.
Schwarz, M.
Freitag, M.
Arnold, A.
Teichert, J.
Justus, M.
Seidel, W.
Ilgner, C.
Awari, N.
Nicoletti, D.
Kaiser, S.
Laplace, Y.
Rajasekaran, S.
Zhang, L.
Winnerl, S.
Schneider, H.
Schay, G.
Lorincz, I.
Rauscher, A. A.
Radu, I.
Mährlein, S.
Kim, T. H.
Lee, J. S.
Kampfrath, T.
Wall, S.
Heberle, J.
Malnasi-Csizmadia, A.
Steiger, A.
Müller, A. S.
Helm, M.
Schramm, U.
Cowan, T.
Michel, P.
Cavalleri, A.
Fisher, A. S.
Stojanovic, N.
Gensch, M.
author_sort Green, B.
collection PubMed
description Ultrashort flashes of THz light with low photon energies of a few meV, but strong electric or magnetic field transients have recently been employed to prepare various fascinating nonequilibrium states in matter. Here we present a new class of sources based on superradiant enhancement of radiation from relativistic electron bunches in a compact electron accelerator that we believe will revolutionize experiments in this field. Our prototype source generates high-field THz pulses at unprecedented quasi-continuous-wave repetition rates up to the MHz regime. We demonstrate parameters that exceed state-of-the-art laser-based sources by more than 2 orders of magnitude. The peak fields and the repetition rates are highly scalable and once fully operational this type of sources will routinely provide 1 MV/cm electric fields and 0.3 T magnetic fields at repetition rates of few 100 kHz. We benchmark the unique properties by performing a resonant coherent THz control experiment with few 10 fs resolution.
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spelling pubmed-47702902016-03-07 High-Field High-Repetition-Rate Sources for the Coherent THz Control of Matter Green, B. Kovalev, S. Asgekar, V. Geloni, G. Lehnert, U. Golz, T. Kuntzsch, M. Bauer, C. Hauser, J. Voigtlaender, J. Wustmann, B. Koesterke, I. Schwarz, M. Freitag, M. Arnold, A. Teichert, J. Justus, M. Seidel, W. Ilgner, C. Awari, N. Nicoletti, D. Kaiser, S. Laplace, Y. Rajasekaran, S. Zhang, L. Winnerl, S. Schneider, H. Schay, G. Lorincz, I. Rauscher, A. A. Radu, I. Mährlein, S. Kim, T. H. Lee, J. S. Kampfrath, T. Wall, S. Heberle, J. Malnasi-Csizmadia, A. Steiger, A. Müller, A. S. Helm, M. Schramm, U. Cowan, T. Michel, P. Cavalleri, A. Fisher, A. S. Stojanovic, N. Gensch, M. Sci Rep Article Ultrashort flashes of THz light with low photon energies of a few meV, but strong electric or magnetic field transients have recently been employed to prepare various fascinating nonequilibrium states in matter. Here we present a new class of sources based on superradiant enhancement of radiation from relativistic electron bunches in a compact electron accelerator that we believe will revolutionize experiments in this field. Our prototype source generates high-field THz pulses at unprecedented quasi-continuous-wave repetition rates up to the MHz regime. We demonstrate parameters that exceed state-of-the-art laser-based sources by more than 2 orders of magnitude. The peak fields and the repetition rates are highly scalable and once fully operational this type of sources will routinely provide 1 MV/cm electric fields and 0.3 T magnetic fields at repetition rates of few 100 kHz. We benchmark the unique properties by performing a resonant coherent THz control experiment with few 10 fs resolution. Nature Publishing Group 2016-02-29 /pmc/articles/PMC4770290/ /pubmed/26924651 http://dx.doi.org/10.1038/srep22256 Text en Copyright © 2016, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Green, B.
Kovalev, S.
Asgekar, V.
Geloni, G.
Lehnert, U.
Golz, T.
Kuntzsch, M.
Bauer, C.
Hauser, J.
Voigtlaender, J.
Wustmann, B.
Koesterke, I.
Schwarz, M.
Freitag, M.
Arnold, A.
Teichert, J.
Justus, M.
Seidel, W.
Ilgner, C.
Awari, N.
Nicoletti, D.
Kaiser, S.
Laplace, Y.
Rajasekaran, S.
Zhang, L.
Winnerl, S.
Schneider, H.
Schay, G.
Lorincz, I.
Rauscher, A. A.
Radu, I.
Mährlein, S.
Kim, T. H.
Lee, J. S.
Kampfrath, T.
Wall, S.
Heberle, J.
Malnasi-Csizmadia, A.
Steiger, A.
Müller, A. S.
Helm, M.
Schramm, U.
Cowan, T.
Michel, P.
Cavalleri, A.
Fisher, A. S.
Stojanovic, N.
Gensch, M.
High-Field High-Repetition-Rate Sources for the Coherent THz Control of Matter
title High-Field High-Repetition-Rate Sources for the Coherent THz Control of Matter
title_full High-Field High-Repetition-Rate Sources for the Coherent THz Control of Matter
title_fullStr High-Field High-Repetition-Rate Sources for the Coherent THz Control of Matter
title_full_unstemmed High-Field High-Repetition-Rate Sources for the Coherent THz Control of Matter
title_short High-Field High-Repetition-Rate Sources for the Coherent THz Control of Matter
title_sort high-field high-repetition-rate sources for the coherent thz control of matter
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4770290/
https://www.ncbi.nlm.nih.gov/pubmed/26924651
http://dx.doi.org/10.1038/srep22256
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