How positioning students in the professional physics community leads to a more inclusive community

Author(s):  
Martha-Elizabeth Baylor
Keyword(s):  
2015 ◽  
Vol 1 (1) ◽  
pp. 133-137
Author(s):  
Pamela Armstrong

Around six hundred astronomers and space scientists gathered at the University of Portsmouth in June 2014 for the Royal Astronomical Society’s National Astronomy Meeting (NAM). NAM is one of the largest professional astronomy conferences in Europe, and this year’s gathering included the UK Solar Physics annual meeting as well as attendance from the magnetosphere, ionosphere and solar-terrestrial physics community. Conference tracks ranged from discussion of the molecular universe to cosmic chronometers, and from spectroscopic cosmology to industrial applications of astrophysics and astronomy.


2000 ◽  
Vol 64 (5) ◽  
pp. 545-545
Author(s):  
Alan Cairns ◽  
George Miley

It is proposed to add a Rapid Communications section to the Journal of Plasma Physics. Papers submitted to this section should be restricted to no more than five printed pages in length, and should contain new and important ideas that warrant rapid dissemination amongst the plasma physics community. Submissions may be sent to any of the Editors or Associate Editors, who will obtain an assessment of the suitability of the paper as quickly as possible. We hope that readers and authors will find this a valuable addition to the journal.


2015 ◽  
Vol 22 (3) ◽  
pp. 538-543 ◽  
Author(s):  
Cristian Svetina ◽  
Cesare Grazioli ◽  
Nicola Mahne ◽  
Lorenzo Raimondi ◽  
Claudio Fava ◽  
...  

The Low Density Matter (LDM) beamline has been built as part of the FERMI free-electron laser (FEL) facility to serve the atomic, molecular and cluster physics community. After the commissioning phase, it received the first external users at the end of 2012. The design and characterization of the LDM photon transport system is described, detailing the optical components of the beamline.


2018 ◽  
Vol 68 (1) ◽  
pp. 291-312 ◽  
Author(s):  
Celine Degrande ◽  
Valentin Hirschi ◽  
Olivier Mattelaer

The automation of one-loop amplitudes plays a key role in addressing several computational challenges for hadron collider phenomenology: They are needed for simulations including next-to-leading-order corrections, which can be large at hadron colliders. They also allow the exact computation of loop-induced processes. A high degree of automation has now been achieved in public codes that do not require expert knowledge and can be widely used in the high-energy physics community. In this article, we review many of the methods and tools used for the different steps of automated one-loop amplitude calculations: renormalization of the Lagrangian, derivation and evaluation of the amplitude, its decomposition onto a basis of scalar integrals and their subsequent evaluation, as well as computation of the rational terms.


2018 ◽  
Vol 48 (1) ◽  
pp. 24-55
Author(s):  
José G. Perillán

John S. Bell openly questioned the dominance of an orthodox quantum interpretation that had seemingly raised the principle of indeterminism from an epistemological question to an ontological truth in the late 1920s. He understood the inevitability of indeterminism to be a theoretical choice made by the founding architects of quantum theory, not a fundamental principle of reality necessitated by experimental facts. As a result, Bell decried the general lull in quantum interpretation debates within the physics community, and in particular, the complete omission of Louis de Broglie’s deterministic pilot wave interpretation from all theoretical and pedagogical discourses. This paper reexamines the pilot wave’s rise, abandonment, and subsequent omission in the history of quantum theory. What emerges is not a straightforward story of victimization and hegemonic marginalization. Instead, it is a story that grapples with tensions between the polyphony of individual voices and a physics community’s evolving identity and consensus in response to particular sociopolitical and scientific contexts. At the heart of these tensions sits an international scientific community transitioning from a politically fractured and intellectually divergent community to one embracing a somewhat forced pragmatic convergence around rationally reconstructed narratives and concepts like the impossibility of determinism. The story of the pilot wave’s omission gives us a window into the inherent power that theoretical choice and a congealing rhetoric of orthodoxy have on a scientific community’s consensus, pedagogical canons, and the future development of science itself.


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