A Taliotis

 A Taliotis

A Taliotis

  • Courses2
  • Reviews2

Biography

The Ohio State University - Physics


Resume

  • 2014

    Masters in Quantitative Finance

    Brownian motion-stochastic calculus

    numerical and estimation methods/Monte Carlo

    time series

    econometrics

    derivative pricing

    asset pricing

    risk management

    principles of finance/financial markets/banks

    programming: Matlab

    Mathematica

    C++.

    Financial Engineering.

    Solvay Brussels School

  • 2012

    Vrije Universiteit Brussel

    Research in theoretical physics

    string theory applications in Quantum Chromodynamics (QCD)/time dependent geometries/confining theories that thermalize

    Heavy Ion Collisions (CERN)

    Quantum Hall Effect

    holographic renormalization.\n\nPublished over than 20 papers in peer reviewed journals. Details exist here \nhttp://inspirehep.net/search?ln=en&p=taliotis&of=hb&action_search=Search&sf=earliestdate&so=d

    Vrije Universiteit Brussel

    JPMorgan Chase & Co.

    London

    United Kingdom

    Quantitative researcher

    Associate

  • 2011

    University of Crete

    JPMorgan Chase & Co.

    IKOS CIF Limited

    VAR Strategies BVBA

    Brussels

    Crete

    Research in theoretical physics

    string theory applications in QCD and condensed matter/strongly coupled gauge theories.

    Postdoctoral Research Fellow in Theoretical Physics

    University of Crete

    Brussels Area

    Belgium

    Swap options from stochastic volatility models (C++ with Python interphase).\nNumerical solutions of PDEs.\n\nhttp://www.varstrategies.com

    Collaborator

    VAR Strategies BVBA

    Brussels

    Limassol

    Cyprus

    Building trading strategies/systematic/algorithmic trading\nImplementing strategies (python/matlab/Java)/simulation engine Java/backtesting \n\nhttps://www.ikosam.com/Awards

    Researcher

    IKOS CIF Limited

  • 2010

    Anastasios

    Taliotis

    The University of Arizona

    Research in theoretical physics

    string theory applications in QCD and condensed matter/strongly coupled gauge theories.

    Postdoctoral Research Fellow in Theoretical Physics

    Tucson

    Arizona Area

    The University of Arizona

  • 2009

    American Physical Society (APS Physics)

    Refereeing for the top impact physics journals: Phys. Rev. Lett.

    Phys. Rev. C

    Phys. Rev. D and JHEP.

    Referee

    United States

    American Physical Society (APS Physics)

  • 2007

    Master of Science (MSc)

    Real analysis

    topology

    abstract algebra/Galois Theory

    differential geometry.

    Mathematics

    The Ohio State University

    thesis title: Black Hole collisions in General Relativity.

  • 2004

    English

    Greek

    Doctor of Philosophy (PhD)

    Thesis Advisor: Yuri Kovchegov (Sackler prize winer

    2006; http://en.wikipedia.org/wiki/Sackler_Prize).

    Theoretical Physics

    The Ohio State University

    thesis title: Geometrical Methods in Heavy Ion Collisions.

    Master of Science (MSc)

    Quantum mechanics

    electrodynamics

    statistical mechanics

    quantum field theory

    particle physics/standard model/quantum cromodynamics

    group theory

    supersymmetry

    general theory of relativity

    string theory.

    Physics

    The Ohio State University

    Thesis title: Quantum Chromodynamics

    a small-x approach

    Launching into Machine Learning

    954QUM6EQ3SK

    Coursera Course Certificates

    Feature Engineering

    3VE4Z8K8XNU7

    Coursera Course Certificates

    Improving Deep Neural Networks: Hyperparameter tuning

    Regularization and Optimization

    FGH8Z7ZWALXH

    Coursera Course Certificates

    Structuring Machine Learning Projects

    HU3HHRTMNRUC

    Coursera Course Certificates

    Sequence Models

    VHUM8ASH3KN8

    Coursera Course Certificates

    Natural Language Processing in TensorFlow

    5S5UAX9TDKX5

    Coursera

    Zero to Deep Learning™ with Python and Keras

    Udemy

    Deep Learning Specialization

    W87GCUL3QY4P

    Coursera Course Certificates

    How Google does Machine Learning

    X4KCNRM294YE

    Coursera Course Certificates

    Sequences

    Time Series and Prediction

    YDR6M559HL5A

    Coursera

    Convolutional Neural Networks

    ZYXU3Z7U8U3N

    Coursera Course Certificates

    Complete Tensorflow 2 and Keras Deep Learning Bootcamp

    Udemy

    TensorFlow in Practice

    HSTF7Q3UYCQ6

    Coursera

    Intro to TensorFlow

    RAGMUVKN5ZJQ

    Coursera Course Certificates

    Complete Guide to TensorFlow for Deep Learning with Python

    Udemy

    Convolutional Neural Networks in TensorFlow

    YDVME46REQTN

    Coursera

    Introduction to TensorFlow for Artificial Intelligence

    Machine Learning

    and Deep Learning

    RZ9Y2VJCM6V3

    Coursera

    Machine Learning

    Coursera Course Certificates-Stanford University

    Neural Networks and Deep Learning

    5S5UAX9TDKX5

    Coursera Course Certificates

  • 1998

    Lykeio Dasupoli

    Bachelor of Science (BSc)

    Physics

    Aristoteleion Panepistimion Thessalonikis

  • Update physics teachers in high schools about the big open problems and the recent development of theoretical physics

    Cypriot Association for Physicists

    Educator

    Statistics

    Brownian Motion

    Python

    Stochastic Differential Equations

    Mathematica

    Valuation

    Matlab

    Physics

    C++

    Risk Management

    Research

    Fixed Income

    Econometrics

    Numerical Analysis

    Stochastic Calculus

    Microsoft Office

    Deep Learning

    Derivatives

    LaTeX

    Machine Learning

    List and publications details exists here

    List and publications details exists here

    Holographic Hall conductivities from dyonic backgrounds

    Jonathan Lindgren

    Ioannis Papadimitriou

    Joris Vanhoof

    Our most recent paper:\n\n We compute the renomalized 1-point and 2-point functions and the AC transport coefficients and show the Ward identities in generic Axion-dilaton-Maxwell-Einstein theories with Chern Simon terms

    a charge density and a magnetic field. We built families of exact solutions by developing a first order fake supergravity formalism for dyonic renormalization group flows in four dimensions. Providing the exact prescription in computing 1-point and 2-point functions in generic magnetic backgrounds that may include confinement

    this paper serves as a manual that may be directly used in botom-up applications of AdS/QCD and AdS/CMT.

    Holographic Hall conductivities from dyonic backgrounds

PHYSLAB 133

1.5(1)