67 citations
- Institute for Research in Fundamental SciencesIR3 papers
- Sharif University of TechnologyIR3 papers
- University of GenoaIT2 papers
- Courant Institute of Mathematical SciencesUS1 paper
- Institute for Advanced Studies in Basic SciencesIR1 paper
- Institute for Cognitive Science StudiesIR1 paper
- Isfahan University of TechnologyIR1 paper
- Islamic Azad University of ShirazIR1 paper
- Korean Council for University EducationKR1 paper
- Kyushu UniversityJP1 paper
- Monash UniversityAU1 paper
- New York UniversityUS1 paper
7 papers · 1 filter
On minimum vertex cover of generalized Petersen graphs
Babak Behsaz, Pooya Hatami, Ebadollah S. Mahmoodian
For natural numbers and (), a generalized Petersen graph , is defined by vertex set and edge set $\lbrace u_iu_{i+1},u_iv_i,v_iv_{i…
Effectiveness in RPL, with Applications to Continuous Logic
Farzad Didehvar, Kaveh Ghasemloo, Massoud Pourmahdian
In this paper, we introduce a foundation for computable model theory of rational Pavelka logic (an extension of Łukasiewicz logic) and continuous logic, and prove effective version…
On the String Pair Creation in Dp-Dp' Brane System
A. Jahan
We address the bosonic string pair creation in a system of parallel Dp-Dp' (p<p') branes by applying the path integral formalism. We drive the string pair creation rate by calculat…
Schwinger Effect in Non-parallel D1-branes: A Path Integral Approach
A. Jahan, D. Kamani
We study the Schwinger effect in a system of non-parallel D1-branes for the bosonic strings using the path integral formalism. We drive the string pair creation rate by calculating…
Synthesis of Reversible Functions Beyond Gate Count and Quantum Cost
Robert Wille, Mehdi Saeedi, Rolf Drechsler
Many synthesis approaches for reversible and quantum logic have been proposed so far. However, most of them generate circuits with respect to simple metrics, i.e. gate count or qua…
Path Integral Approach to Fermionic Vacuum Energy in Non-parallel D1-Branes
A. Jahan
The fermionic one loop vacuum energy of the superstring theory in a system of non-parallel D1-branes is derived by applying the path integral formalism.