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Roadmap on dynamics of molecules and clusters in the gas phase

Authors :
Zettergren, Henning
Domaracka, Alicja
Schlathoelter, Thomas
Bolognesi, Paola
Diaz-Tendero, Sergio
Labuda, Marta
Tosic, Sanja
Maclot, Sylvain
Johnsson, Per
Steber, Amanda
Tikhonov, Denis
Castrovilli, Mattea Carmen
Avaldi, Lorenzo
Bari, Sadia
Milosavljevic, Aleksandar R.
Palacios, Alicia
Faraji, Shirin
Piekarski, Dariusz G.
Rousseau, Patrick
Ascenzi, Daniela
Romanzin, Claire
Erdmann, Ewa
Alcami, Manuel
Kopyra, Janina
Limao-Vieira, Paulo
Kocisek, Jaroslav
Fedor, Juraj
Albertini, Simon
Gatchell, Michael
Cederquist, Henrik
Schmidt, Henning T.
Gruber, Elisabeth
Andersen, Lars H.
Heber, Oded
Toker, Yoni
Hansen, Klavs
Noble, Jennifer A.
Jouvet, Christophe
Kjaer, Christina
Nielsen, Steen Brondsted
Carrascosa, Eduardo
Bull, James
Candian, Alessandra
Petrignani, Annemieke
Zettergren, Henning
Domaracka, Alicja
Schlathoelter, Thomas
Bolognesi, Paola
Diaz-Tendero, Sergio
Labuda, Marta
Tosic, Sanja
Maclot, Sylvain
Johnsson, Per
Steber, Amanda
Tikhonov, Denis
Castrovilli, Mattea Carmen
Avaldi, Lorenzo
Bari, Sadia
Milosavljevic, Aleksandar R.
Palacios, Alicia
Faraji, Shirin
Piekarski, Dariusz G.
Rousseau, Patrick
Ascenzi, Daniela
Romanzin, Claire
Erdmann, Ewa
Alcami, Manuel
Kopyra, Janina
Limao-Vieira, Paulo
Kocisek, Jaroslav
Fedor, Juraj
Albertini, Simon
Gatchell, Michael
Cederquist, Henrik
Schmidt, Henning T.
Gruber, Elisabeth
Andersen, Lars H.
Heber, Oded
Toker, Yoni
Hansen, Klavs
Noble, Jennifer A.
Jouvet, Christophe
Kjaer, Christina
Nielsen, Steen Brondsted
Carrascosa, Eduardo
Bull, James
Candian, Alessandra
Petrignani, Annemieke
Publication Year :
2021

Abstract

This roadmap article highlights recent advances, challenges and future prospects in studies of the dynamics of molecules and clusters in the gas phase. It comprises nineteen contributions by scientists with leading expertise in complementary experimental and theoretical techniques to probe the dynamics on timescales spanning twenty order of magnitudes, from attoseconds to minutes and beyond, and for systems ranging in complexity from the smallest (diatomic) molecules to clusters and nanoparticles. Combining some of these techniques opens up new avenues to unravel hitherto unexplored reaction pathways and mechanisms, and to establish their significance in, e.g. radiotherapy and radiation damage on the nanoscale, astrophysics, astrochemistry and atmospheric science.

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1280395880
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1140.epjd.s10053-021-00155-y