Zobrazeno 1 - 10
of 11
pro vyhledávání: '"E. Schmidt, Bruno"'
Autor:
Endo, Tomoyuki, P. Neville, Simon, Wanie, Vincent, Beaulieu, Samuel, Qu, Chen, Deschamps, Jude, Lassonde, Philippe, E. Schmidt, Bruno, Fujise, Hikaru, Fushitani, Mizuho, Hishikawa, Akiyoshi, L. Houston, Paul, M. Bowman, Joel, S. Schuurman, Michael, François, Légaré, Ibrahim, Heide, Tomoyuki, Endo
紫外光励起に伴うホルムアルデヒドの超高速緩和過程および解離過程を時間分解クーロン爆発イメージング法を用いて調べた。その結果、これまでに報告されている緩和過程よりも5桁速
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=jairo_______::1f6f59c04199b0cc81ae756ce964f7c8
https://repo.qst.go.jp/records/86439
https://repo.qst.go.jp/records/86439
Autor:
Endo, Tomoyuki, P. Neville, Simon, Wanie, Vincent, Beaulieu, Samuel, Qu, Chen, Deschamps, Jude, Lassonde, Philippe, E. Schmidt, Bruno, Fujise, Hikaru, Fushitani, Mizuho, Hishikawa, Akiyoshi, L. Houston, Paul, M. Bowman, Joel, S. Schuurman, Michael, François, Légaré, Ibrahim, Heide, Tomoyuki, Endo
紫外光励起に伴うホルムアルデヒドの超高速緩和過程および解離過程を時間分解クーロン爆発イメージング法を用いて調べた。その結果、これまでに報告されている緩和過程よりも5桁速
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=jairo_______::87d156ffe398dacb1463a5afe6dfe218
https://repo.qst.go.jp/records/86250
https://repo.qst.go.jp/records/86250
Autor:
Endo, Tomoyuki, P. Neville, Simon, Wanie, Vincent, Beaulieu, Samuel, Qu, Chen, Deschamps, Jude, Lassonde, Philippe, E. Schmidt, Bruno, Fujise, Hikaru, Fushitani, Mizuho, Hishikawa, Akiyoshi, L. Houston, Paul, M. Bowman, Joel, S. Schuurman, Michael, François, Légaré, Ibrahim, Heide, Tomoyuki, Endo
Publikováno v:
Science. 370(6520):1072-1077
Since the discovery of roaming as an alternative molecular dissociation pathway in formaldehyde (H2CO), it has been indirectly observed in numerous molecules. The phenomenon describes a frustrated dissociation with fragments roaming at relatively lar
Autor:
Endo, Tomoyuki, P. Neville, Simon, Wanie, Vincent, Beaulieu, Samuel, Qu, Chen, Deschamps, Jude, Lassonde, Philippe, E. Schmidt, Bruno, Fujise, Hikaru, Fushitani, Mizuho, Hishikawa, Akiyoshi, L. Houston, Paul, M. Bowman, Joel, S. Schuurman, Michael, François, Légaré, Ibrahim, Heide, Tomoyuki, Endo
Since the discovery of roaming as an alternative molecular dissociation pathway in formaldehyde (H2CO), it has been indirectly observed in numerous molecules. The phenomenon describes a frustrated dissociation with fragments roaming at relatively lar
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=jairo_______::f588c0c5eb20220731577400762e7a8b
https://repo.qst.go.jp/records/83458
https://repo.qst.go.jp/records/83458
Autor:
Endo, Tomoyuki, P. Neville, Simon, Wanie, Vincent, Beaulieu, Samuel, Qu, Chen, Deschamps, Jude, Lassonde, Philippe, E. Schmidt, Bruno, Fujise, Hikaru, Fushitani, Mizuho, Hishikawa, Akiyoshi, L. Houston, Paul, M. Bowman, Joel, S. Schuurman, Michael, François, Légaré, Ibrahim, Heide, Tomoyuki, Endo
Since the discovery of roaming as an alternative molecular dissociation pathway in formaldehyde (H2CO), it has been indirectly observed in numerous molecules. The phenomenon describes a frustrated dissociation with fragments roaming at relatively lar
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=jairo_______::2322325c568018473d5f99a7ed55ab60
https://repo.qst.go.jp/records/83114
https://repo.qst.go.jp/records/83114
Autor:
Endo, Tomoyuki, P. Neville, Simon, Wanie, Vincent, Beaulieu, Samuel, Qu, Chen, Deschamps, Jude, Lassonde, Philippe, E. Schmidt, Bruno, Fujise, Hikaru, Fushitani, Mizuho, Hishikawa, Akiyoshi, L. Houston, Paul, M. Bowman, Joel, S. Schuurman, Michael, François, Légaré, Ibrahim, Heide, Tomoyuki, Endo
紫外光励起に伴うホルムアルデヒドの解離過程を時間分解クーロン爆発イメージング法と半古典的分子動力学シミュレーションを用いて調べた。その結果、従来から知られている分子解
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=jairo_______::a66c65a14114e4c424283b27f47de1b1
https://repo.qst.go.jp/records/82955
https://repo.qst.go.jp/records/82955
Autor:
Endo, Tomoyuki, P. Neville, Simon, Wanie, Vincent, Beaulieu, Samuel, Qu, Chen, Deschamps, Jude, Lassonde, Philippe, E. Schmidt, Bruno, Fujise, Hikaru, Fushitani, Mizuho, Hishikawa, Akiyoshi, L. Houston, Paul, M. Bowman, Joel, S. Schuurman, Michael, François, Légaré, Ibrahim, Heide, Tomoyuki, Endo
紫外光励起に伴うホルムアルデヒドの解離過程を時間分解クーロン爆発イメージング法と半古典的分子動力学シミュレーションを用いて調べた。その結果、従来から知られている分子解
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=jairo_______::d99c2ae9133b78a7a5ef9688124ef252
https://repo.qst.go.jp/records/82357
https://repo.qst.go.jp/records/82357
Autor:
Endo, Tomoyuki, P. Neville, Simon, Wanie, Vincent, Beaulieu, Samuel, Qu, Chen, Deschamps, Jude, Lassonde, Philippe, E. Schmidt, Bruno, Fujise, Hikaru, Fushitani, Mizuho, Hishikawa, Akiyoshi, L. Houston, Paul, M. Bowman, Joel, S. Schuurman, Michael, François, Légaré, Ibrahi, Heide
“Roamers” are directly observed in the prototypical roaming reaction in the formaldehyde molecule. Despite their statistical nature, roaming is well discriminated from the radical- and molecular dissociation channels, using Coulomb explosion imag
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=jairo_______::8fec278d46ddd9a24fbf5f7805a795f5
https://repo.qst.go.jp/records/81077
https://repo.qst.go.jp/records/81077
Autor:
Steffen Hädrich, Riccardo Piccoli, Luca Razzari, Vincent Cardin, Michael Chini, Denis Ferachou, E. Schmidt Bruno, Roberto Morandotti, Young-Gyun Jeong, François Légaré, Jens Limpert
Publikováno v:
EPJ Web of Conferences, Vol 205, p 01010 (2019)
We demonstrate 33-fold pulse compression employing a 6-m-long hollow-core fiber and chirped mirrors. 1 mJ, 170 fs pulses at 1030 nm are compressed to 5.1 fs (1.5 optical cycles) with 70% efficiency.
Autor:
B. Corkum Paul, E. Schmidt Bruno, Arvid Hage, Lou Di Mauro, François Légaré, Hans Jakob Wörner, Philippe Lassonde, Denis Ferachou, Vincent Gruson, Heide Ibrahim, Guilmot Ernotte, Torsten Mans
Publikováno v:
EPJ Web of Conferences, Vol 205, p 01012 (2019)
FoTaking advantage of pulse shortening upon amplification, we demonstrate 2.5TW pulses (30mJ, 2 cycle, 1.8 μm) based on TiSa pumping, while for boosting average power we utilize a 500W Yb platform for pump and seed pulses.