ISMB2015 is the XXVI Edition of the Molecular Beams Conference series and will take place in Segovia, Spain, from the 28th of June to the 3rd of July 2015. The venue will be Parador Nacional de Segovia, an outstanding hotel and convention center located very close to medieval Segovia downtown, UNESCO Heritage city since 1985.
ISMB2015 will bring together scientists from all over the world to present and discuss the most recent advances in Molecular Beams Science, including reaction and photodissociation dynamics of neutral and ion molecules, ultrafast dynamics and coherent control, cold molecules, biomolecules, molecular clusters and helium droplets, liquid micro-jets and aerosols, beam-surface collisions, with contributions from both theory and experiment.
Following the tradition of the last Conferences, in this occasion ISMB2015 is dedicated to two outstanding scientists whose contributions and impact on Molecular Beams Science have been fundamental: Piergiorgio Casavecchia and Mike Ashfold, who will deliver plenary lectures in a special session in the afternoon of July 2, 2015.
The Conference format will include invited lectures, oral presentations selected among the abstract contributions, and poster sessions. The participation of young researchers and students is particularly welcome.
The day of arrival is Sunday, June 28, 2015, with registration during the afternoon and a reception in the evening. The program starts on Monday, June 29, 2015. The Conference will finish on the 3rd of July at midday, after a closure session.
Further information can be found on the conference web site: http://www.ucm.es/ismb which will be kept updated with the most recent news.
On behalf of the ISMB2015 Organizing Committee,
Javier Aoiz & Luis Bañares (Chairs)
The European Physical Society (EPS), The Optical Society (OSA) and IEEE Photonics Society invite you to attend the European Conference on Lasers and Electro-Optics (CLEO®/Europe) and the XIIIth European Quantum Electronics Conference (EQEC) which will take place from 21 to 25 June 2015 at the International Congress Centre (ICM) in Munich, Germany. These two conferences, hosted by LASER 2015 World of PHOTONICS, the world’s largest trade fair on Laser Technology, will be the major European event of the International Year of Light and welcome prestigious speakers in optics and applications.
|High Level Opening
The Opening Ceremony of World of Photonics Congress 2015 will see high-level speakers, UNESCO representatives and European and international dignitaries join together with the scientific community at Europe’s broadest photonics congress held exactly in the middle of the International Year of Light.
|Plenaries will present Nobel Laureates and world-class speakers
Theodor W. Hänsch, 2005 Nobel Laureate in Physics, Serge Haroche, 2012 Nobel Laureate of Physics, and Federico Capasso, 2013 Laureate of the EPS-Quantum Electronics and Optics Prize, will address the latest developments in their fields of research.
|A leading forum for scientific and technical photonics
Attendees will have the opportunity to share groundbreaking research, ideas and network.
|Enjoy training courses. Apply for new Travel Grant Student Awards
10 short courses, taught by world-leading scientists and outstanding industry experts, will cover a wide range of exciting topics in photonics and laser technology. Last but not least, EPS and Young Minds Initiative will offer 10 travel grants to PhD Students who wish to attend CLEO®/Europe-EQEC 2015.
|Please, visit the conference website at http://www.cleoeurope.org/ and submit your papers!
Paper submission will start on October 17, 2014.
Deadline for submissions will be January 19, 2015, 17:00 GMT
See you in Munich!
The upcoming 16th International XAFS16 International Conference on X-ray Absorption Fine Structure (www.xafs16.org) will be held in Karlsruhe/Germany, August 23-28, 2015.
A 1-day symposium (organized within the main conference) entitled “Current and future opportunities for X-ray spectroscopies at XFELs”, will provide a broad overview of the current status and challenges for various types of X-ray spectroscopies at the recently operational X-ray Free Electron Laser Facilities (XFELs), including XAFS, non-resonant and resonant XES. The emphasis will be given to ultrafast time-resolved X-ray spectroscopic studies exploiting the unique and unprecedented brightness and ultrashort pulse duration of these 4th generation light sources exploiting both soft and hard X-radiation. It will also highlight the future opportunities for X-ray spectroscopies in the context of the rapidly improving XFEL technology.
We are now in the process of finalizing details of the symposium program and we would like to strongly encourage you to submit abstracts to XAFS16 concerning Session 17: “Spectroscopies at XFEL sources, Time-resolved and ultrafast techniques” (see the following link for a list of all topics for abstract submission: http://www.xafs16.org/26.php).
Both invited/contributed talks will be selected from the abstracts, next to poster presentations. The extended deadline for abstract submission for XAFS16 is in a few days only, March 15th, 2015.
The International school on “The Frontiers of Attosecond and Ultrafast X-ray Science” will be held from 19th to 28th March 2017 in Erice, Sicily, Italy.
The primary objective of this new school is to educate the next generation of scientists who will impact the future of attosecond and ultrafast x-ray science. We anticipate that the school will meet on a regular basis every two years and become a foundation for the ultrafast community. Consequently, the main topics of the course are the following: (i) attosecond science and technology, devoted to the generation and application of attosecond pulses to the investigation of electronic dynamics in atoms, molecules, nanostructures and condensed phases; (ii) fundamentals, methods and applications of free electron lasers, synchrotron radiation, ion collisions in atomic and molecular science. Lectures will cover current developments in theory and experiments but are also intended to give the basics of the field.
Please note that, PhD students and post-docs willing to attend the school can apply for scholarships (deadline 30 January 2017). For more details see: http://www.erice-attosecond.it/registration
The school co-organised by XLIC COST Action and sponsored by Politecnico di Milano, Italian Ministry of Education and Scientific Research, Sicilian Regional Parliament, ELI-ALPS and Ettore Majorana Foundation and Centre for Scientific Culture.
Louis Di Mauro, Alicja Domaracka, Mauro Nisoli and Sergio Martellucci
The scientific workshop: “Massive Computation for Ultrafast Molecular Breaking” (MACUMB 2017) will be held in the Universidad Autónoma de Madrid (Spain) on 25th and 26th of May 2017.
The scientific program (http://www.macumb.info/programme.html) includes ten invited talks that will be combined with two 3-hours practical sessions in computer rooms. We aim to bring together developers of the state-of-the-art scientific software in the field of quantum chemistry and molecular physics.
Registration is already open and closes on May 15th, 2017. The registration for the meeting is free for all participants.
You can find detailed information at http://www.macumb.info/
Alicia Palacios, Sergio Díaz-Tendero and Jesús González-Vázquez
Departamento de Química, Facultad de Ciencias
Universidad Autónoma de Madrid
The two ICPEAC satellite meetings:
- The 25th International Symposium on Ion Atom Collisions (http://atom.curtin.edu.au/isiac)
- International Symposium on (e,2e), Double Photoionization and Related Topics with the 19th International Symposium on Polarization and Correlation in Electronic and Atomic Collisions http://atom.curtin.edu.au/e2epol
still welcome abstract submissions until the end of April. The confirmed invited speakers are available at the respective Scientific Program links.
We look forward to your participation,
Alisher Kadyrov, Chair of ISIAC
Igor Bray, Chair of (e,2e)-pol
Molecular reaction dynamics has become an integral part of modern chemistry and is set to become a cornerstone for much of the natural sciences. Molecular reaction dynamics is the study of elementary processes and the means of probing them, understanding them, and controlling them. It can be applied to reactions in solution and to reactions on surfaces, exploring the elementary steps in catalysis. Nowadays chemistry requires a molecular level understanding of the reactivity. Moreover, chemical kinetics in an old discipline (born in 1850) that deals with the rates of chemical reaction and how these rates depend on factors such as concentration and temperature. Although it in principle presents a macroscopic point of view, this can be directly related with the molecular point of view. Thus, kinetic or dynamic Monte Carlo simulations allow us to bridge the gap of many orders of magnitude in length and time scales between the processes on the molecular scale and the macroscopic kinetics.
The present school is open to European master and PhD students and postdocs with interest to understand chemical reactions at molecular level and to apply the theoretical and computational chemistry to this matter. First-year students of the Erasmus+ Master European in Theoretical Chemistry and Molecular Modelling will attend to this school as a part of their mandatory subjects although second-year students of this Master but from the rest of Europe it is expected that can attend too. Last year (2017) we made by first time this school and it was very successful.
The school will cover the principal aspects of the kinetics and dynamics of chemical reactions, centred mainly in the theoretical and computational approaches, although some experimental techniques will also be explained.
Registration deadline: March 9, 2018
More Information at https://www.cecam.org/workshop-1529.html
Photoinitiated processes are not only important for understanding natural phenomena but they also play an undeniable role in the booming fields of renewable energy, material design and medicine. Excited state processes have traditionally been explained from a static point of view, delivering in some cases a biased, incorrect or even incomplete description of the former. The simulation of the dynamics of such processes is therefore fundamental for the quest to understand the chemical and physical mechanisms.
The purpose of this school is to introduce its participants to state-of-the-art methodologies for the simulation of the dynamics of processes in the excited state, following the evolution in time of photoinitiated reactions, one of the priority topics of this call.
The school will be focused in simulating the dynamics of complex molecules. Electronic ab initio or TD-DFT methods would be sketched for obtaining the electronic wavefunctions or densities, that would be afterwards quantum-mechanically propagated. Moreover, several approaches for the treatment of the nuclei will be also provided, from full quantum dynamics to mixed quantum-classical dynamics.
The course is directed at PhD students, and young researchers, beginners in the field, working in theoretical chemistry and molecular physics.
The tutorial will be organized in 6 theoretical and 6 practical sessions, the latter taking place in the computer lab. The theoretical sessions will be of 3 hours and practical sessions will last 3 hours. The school will comprise 3 didactic blocks.
The first block will have an introductory character and will offer an overview of the field. The following block will focus on mono- and multi-configurational electronic structure methods for the description of excited states. The last block will cover dynamics methodologies. See description below. The school will end with a comprehensive overview (2 hours) of state-of-the-art applications, limitations, suitabilities, future perspectives and challenges of the different static and dynamical approaches described in the school.
More information: https://www.cecam.org/workshop-1542.html
The recent development of novel light sources like x-ray free-electron lasers and table-top lasers for high-harmonic generation, which are capable of delivering controllable sequences of intense sub-femtosecond ionizing pulses, has opened the way to monitor and control electron dynamics in atoms and molecules at its natural time scale, the attosecond (Chem. Rev. 2017, DOI: 10.1021/acs.chemrev.6b00453). The description of the coherent superposition of electronic continuum states that the interaction of such pulses with molecules generates goes beyond the capabilities of standard quantum-chemistry packages, which have been designed to describe the lowest bound states. Furthermore, stationary state-based pictures based on lowest-order perturbation theory are, in most cases, inapplicable. The purpose of this school is to introduce state-of-the-art ab-initio, hybrid and TDDFT numerical methods that can cope with ultra-fast dynamics in the electronic continuum of molecules, with an emphasis on unbound states in strong-fields and on the need to go beyond single-active-electron models to properly account for electron correlation. The course is directed to advanced master students, PhD students and young post-doctoral researchers in atomic and molecular physics, theoretical chemistry and applied mathematics, with an interest in developing new software for coherent control of electronic dynamics in systems of chemical interest.
The tutorial will be organized in 5 theoretical sessions and 4 practical sessions in the computer lab. Both theoretical and practical sessions will be of 4 hours. The school comprises four didactic blocks. The first block has an introductory character. It offers an overview of the field and a tutorial on strong field physics. The following three blocks focus on systems of increasing complexity and will be devoted to the description and use of new computational methods for fast time evolution in correlated systems in non-perturbative conditions (see description below). The school will end with a comprehensive overview of state-of-the-art results in attosecond pump-probe and strong field molecular science obtained with ab initio “exact” simulations in small systems, on the one side, and with TD-DFT effective-field simulations, capable of coping with larger systems, on the other side. The future perspectives, challenges and mutual interaction of these two complementary approaches will be discussed.
More information: https://www.cecam.org/workshop-1552.html