Adrian Lewandowski
Max Planck Society
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Featured researches published by Adrian Lewandowski.
Modern Physics Letters A | 2015
Piotr H. Chankowski; Adrian Lewandowski; Krzysztof A. Meissner; Hermann Nicolai
We point out a possible mechanism by which the electroweak hierarchy problem can be avoided in the low energy effective quantum field theory. Assuming the existence of a UV complete underlying fundamental theory and treating the cutoff scale Λ of the effective field theory as a real physical scale we argue that the hierarchy problem would be solved if the coefficient in front of quadratic divergences vanished at the scale Λ, and if the effective theory mass parameters fixed at Λ by the fundamental theory were hierarchically smaller than Λ itself. While this mechanism most probably cannot work in the Standard Model if the scale Λ is to be close to the Planck scale, we show that it can work in a minimal extension (Conformal Standard Model) proposed recently for a different implementation of conformal symmetry breaking.
Applied Physics Letters | 2016
Kristen M. Burson; Leonard Gura; Burkhard Kell; Christin Büchner; Adrian Lewandowski; Markus Heyde; Hans-Joachim Freund
Recent advancements in liquid atomic force microscopy make it an ideal technique for probing the structure of solid-liquid interfaces. Here, we present a structural study of a two-dimensional amorphous silica bilayer immersed in an aqueous solution utilizing liquid atomic force microscopy with sub-nanometer resolution. Structures show good agreement with atomically resolved ultra-high vacuum scanning tunneling microscopy images obtained on the same sample system, owing to the structural stability of the silica bilayer and the imaging clarity from the two-dimensional sample system. Pair distance histograms of ring center positions are utilized to develop quantitative metrics for structural comparison, and the physical origin of pair distance histogram peaks is addressed by direct assessment of real space structures.
Physical Review D | 2018
Adrian Lewandowski; Krzysztof A. Meissner; Hermann Nicolai
The conformal standard model is a minimal extension of the Standard Model (SM) of particle physics based on the assumed absence of large intermediate scales between the TeV scale and the Planck scale, which incorporates only right-chiral neutrinos and a new complex scalar in addition to the usual SM degrees of freedom, but no other features such as supersymmetric partners. In this paper, we present a comprehensive quantitative analysis of this model, and show that all outstanding issues of particle physics proper can in principle be solved “in one go” within this framework. This includes in particular the stabilization of the electroweak scale, “minimal” leptogenesis and the explanation of dark matter, with a small mass and very weakly interacting Majoron as the dark matter candidate (for which we propose to use the name “minoron”). The main testable prediction of the model is a new and almost sterile scalar boson that would manifest itself as a narrow resonance in the TeV region. We give a representative range of parameter values consistent with our assumptions and with observation.
Journal of High Energy Physics | 2016
Piotr H. Chankowski; Adrian Lewandowski; Krzysztof A. Meissner
A bstractWe perform a systematic one-loop renormalization of a general renormalizable Yang-Mills theory coupled to scalars and fermions using a regularization scheme with a smooth momentum cutoff Λ (implemented through an exponential damping factor). We construct the necessary finite counterterms restoring the BRST invariance of the effective action by analyzing the relevant Slavnov-Taylor identities. We find the relation between the renormalized parameters in our scheme and in the conventional MS¯
Journal of the American Chemical Society | 2018
David Kuhness; Hyun Jin Yang; Hagen W. Klemm; Mauricio J. Prieto; Gina Peschel; Alexander Fuhrich; D. Menzel; Thomas Schmidt; Xin Yu; Shamil K. Shaikhutdinov; Adrian Lewandowski; Markus Heyde; Anna Kelemen; Radosław Włodarczyk; Denis Usvyat; Martin Schütz; Joachim Sauer; Hans-Joachim Freund
Acta Physica Polonica B | 2017
Piotr H. Chankowski; Adrian Lewandowski; Krzysztof A. Meissner
\overline{\mathrm{MS}}
Physical Review B | 2018
Adrian Lewandowski; Philomena Schlexer; Christin Büchner; Earl M. Davis; Hannah Burrall; Kristen M. Burson; Wolf-Dieter Schneider; Markus Heyde; Gianfranco Pacchioni; Hans-Joachim Freund
Archive | 2017
Adrian Lewandowski
scheme which allow us to obtain the explicit two-loop renormalization group equations in our scheme from the known two-loop ones in the MS¯
Journal of Physical Chemistry C | 2018
Adrian Lewandowski; Philomena Schlexer; Sergio Tosoni; Leonard Gura; Patrik Marschalik; Christin Büchner; Hannah Burrall; Kristen M. Burson; Wolf-Dieter Schneider; Gianfranco Pacchioni; Markus Heyde
Bulletin of the American Physical Society | 2018
Kristen M. Burson; Adrian Lewandowski; Philomena Schlexer; Christin Buechner; Hannah Burrall; Wolf-Dieter Schneider; Gianfranco Pacchioni; Markus Heyde; Hans-Joachim Freund
\overline{\mathrm{MS}}