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  2. Gareth Conduit The life of a condensed matter theorist ...

    www.tcm.phy.cam.ac.uk/~gjc29/talks/PhysicsAtWorkTalk2008.pdf
    24 Aug 2020: Leads to new interesting many-body effects that have prac-tical applications in modern day life e.g. • ... Yes. You have learnt something new about the way the world works.
  3. Slide 1

    www.tcm.phy.cam.ac.uk/~gjc29/talks/LoughboroughTalk2016.pdf
    24 Aug 2020: Summary. Analyze databases with artificial intelligence to discover four new alloys.
  4. Slide 1

    www.tcm.phy.cam.ac.uk/~gjc29/talks/LancasterTalk2015.pdf
    24 Aug 2020: Oxidationresistance. Corrosionresistance. Processibility. Fracturetoughness Yield strength. Requiredproperties. for new alloy. Multidimensional design space. ... Modelcreation. External. Summary. Used artificial intelligence in materials discovery.
  5. Slide 1

    www.tcm.phy.cam.ac.uk/~gjc29/talks/RSCTalk2020.pdf
    28 Sep 2020: Fill in’ missing data to proactively highlight high-quality compounds Identify new opportunities with confidence. • ... Target for a new ink. Dr Josie Harries. Alchemite proposes a new ink.
  6. Slide 1

    www.tcm.phy.cam.ac.uk/~gjc29/talks/OPTiMaDeTalk2018.pdf
    24 Aug 2020: Planned inclusion of OPTiMaDe API in matador. API manages DFT and molecular dynamics data for designing new lubricants.
  7. Disrupting the Production Timeline with Digitalisation and Additive…

    www.tcm.phy.cam.ac.uk/~gjc29/talks/CeramicsUKTalk2020.pdf
    4 Dec 2020: 4. How can OEMs and end users collaborate to accelerate the adoption of new technology?
  8. Optibrium_Augmented Chemistry_09 10 19_for final approvalv2

    www.tcm.phy.cam.ac.uk/~gjc29/coverage/AugmentedChemistry.pdf
    14 Dec 2020: The company’s new Augmented Chemistry products and services deliver ground-breaking artificial intelligence technologies that continuously learn from all available data to supplement researchers experience and skills. ... Optibrium continues to develop
  9. Version 3

    www.tcm.phy.cam.ac.uk/~gjc29/posters/Intellegens.pdf
    24 Aug 2020: 200x. Using a new deep learning technology, developed by members of our founding team at the University of. ... created empirically at significant expense. Our new algorithm can extract an unprecedented amount of.
  10. An ab initio study of theLittle-Parks effect Gareth Conduit, ...

    www.tcm.phy.cam.ac.uk/~gjc29/talks/TCMTalk2011.pdf
    24 Aug 2020: Liu et al., Science 2001; Wang et al., PRL 2005]. Strategy to study superconductors Develop new formalism to:. ... ple. Lead. Lead. Summary & future prospects.  Developed new formalism that includes thermal phase fluctuations to calculate and probe
  11. Slide 1

    www.tcm.phy.cam.ac.uk/~gjc29/talks/AccelrysTalk2013.pdf
    24 Aug 2020: Designing a new material – what is required? Cost. Density. Fatigue lifeCreepOxidationresistance. ... Designing a new material – what is required? PCost. PDensity. PFatiguePCreepPOxidation.
  12. Slide 1

    www.tcm.phy.cam.ac.uk/~gjc29/talks/ElixirTalk2020.pdf
    29 Oct 2020: Machine learning as a black box. Train from historical data. Predict new chemicals.
  13. Modelling the magnetoresistance of disordered superconducting films…

    www.tcm.phy.cam.ac.uk/~gjc29/talks/YorkTalk2012.pdf
    24 Aug 2020: Accelerated Metropolis sampling To perform thermal sum calculate.  Propose new configuration of and , accept with probability. ...  Calculating costs , where is the number of sites New method calculates using a order.
  14. Pseudopotentials for an ultracold dipolar gasThomas Whitehead and…

    www.tcm.phy.cam.ac.uk/~gjc29/posters/Pseudopotential.pdf
    24 Aug 2020: In order to remedy this we propose a smooth new pseudopotential (green).
  15. Gareth Conduit Quantum critical itinerant ferromagnetism Gareth…

    www.tcm.phy.cam.ac.uk/~gjc29/talks/ESDGTalk2009.pdf
    24 Aug 2020: H. Gareth Conduit. Sr3Ru. 2O. 7. Resistance anomaly. Consistent with a new crystalline phaseGrigera et al., Science 2004.
  16. Inhomogeneous phase formation on the border of itinerant…

    www.tcm.phy.cam.ac.uk/~gjc29/talks/APSTalki2010.pdf
    24 Aug 2020: Summary of equilibrium results. Momentum distribution. New approach to fluctuation corrections.
  17. DATA - DRIVEN DISCOVERY 7 examples of how materials ...

    www.tcm.phy.cam.ac.uk/~gjc29/talks/WebinarSevenApplicationsTalk2020.pdf
    24 Aug 2020: Outcome. New nickel-base superalloy that met 11 targets. Properties were experimentally verified. ... 3D printing. Challenge. Additive manufacturing is a new process that requires new materials.
  18. Slide 1

    www.tcm.phy.cam.ac.uk/~gjc29/talks/GrantaTalk2016.pdf
    24 Aug 2020: Summary. Artificial intelligence tool that can handle fragmented data. Discover four new alloys that are experimentally verified.
  19. Slide 1

    www.tcm.phy.cam.ac.uk/~gjc29/talks/BMLMunjalTalk2020.pdf
    22 Nov 2020: Combustor in a jet engine. Direct laser deposition requires new alloys.
  20. Slide 1

    www.tcm.phy.cam.ac.uk/~gjc29/talks/InnsbruckTalk2012.pdf
    24 Aug 2020: Absence of domainsHo in “Magnetized Gas Points to New Physics”, Science (2009). •
  21. Slide 1

    www.tcm.phy.cam.ac.uk/~gjc29/talks/BristolLecture12014.pdf
    24 Aug 2020: New strongly correlated effects. Within condensed matter physics, there is a very exciting interplay between experiment and theory: Sometimes theory is first to predict effects, often experiments discover interesting novel phenomena
  22. Effect of three-body loss on itinerant ferromagnetism in an ...

    www.tcm.phy.cam.ac.uk/~gjc29/talks/APSTalkiii2010.pdf
    24 Aug 2020: Summary of equilibrium results. Momentum distribution. New approach to fluctuation corrections.
  23. Slide 1

    www.tcm.phy.cam.ac.uk/~gjc29/talks/GrantaTalk2013.pdf
    24 Aug 2020: Designing a new material – what is required? Cost. Density. Fatigue lifeCreep. ... Materials selection. Materials selection. Materials selection. Guide the discovery of new materials.
  24. Slide 1

    www.tcm.phy.cam.ac.uk/~gjc29/talks/ESDGTalk2013ii.pdf
    24 Aug 2020: Oxidationresistance. Corrosionresistance. Processibility. Fracturetoughness Yield strength. Requiredproperties. for new alloy. Contemporary alloys. ... Slide 8. Slide 9. Slide 10. Designing a new alloy – what is required?
  25. Slide 1

    www.tcm.phy.cam.ac.uk/~gjc29/talks/TowlerTalk2013.pdf
    24 Aug 2020: Materials selection. Materials selection. Materials selection. Materials selection. Guide the discovery of new materials. ... Slide 6. Slide 7. Slide 8. Slide 9. Slide 10. Designing a new alloy – what is required?
  26. Slide 1

    www.tcm.phy.cam.ac.uk/~gjc29/talks/ImperialTalk2013.pdf
    24 Aug 2020: Jet engine: bird strike. Designing a new alloy – what is required? ... Slide 6. Slide 7. Slide 8. Slide 9. Slide 10. Designing a new alloy – what is required?
  27. Theoretical Physics - Theory of Condensed Matter

    www.tcm.phy.cam.ac.uk/~gjc29/talks/PhysicsAtWorkTalk2007.pdf
    24 Aug 2020: Galileo’s experiment. Time/s Distance/m1 12 43 94 165 25. Physics is about pattern recognitionExperiments give quantitative cluesTheory must explain observationsMust make new predictionsUnify understanding of different phenomena.
  28. Slide 1

    www.tcm.phy.cam.ac.uk/~gjc29/talks/TCMCurrentResearchTalk2019.pdf
    24 Aug 2020: Combustor in a jet engine. Direct laser deposition requires new alloys. ... Validate using a realistically split holdout data set, extrapolate to new chemical space.
  29. Gareth Conduit (Cavendish Laboratory) Quantum critical itinerant…

    www.tcm.phy.cam.ac.uk/~gjc29/talks/StAndrewsTalk2008.pdf
    24 Aug 2020: 2O. 7. Resistance anomaly. Consistent with a new crystalline phaseGrigera et al., Science 2004.
  30. DATA - DRIVEN DISCOVERY Ingredients Processes Properties…

    www.tcm.phy.cam.ac.uk/~gjc29/talks/WebinarMaterialsChemicalsTalk2020.pdf
    24 Aug 2020: Combustor in a jet engine. Direct laser deposition requires new alloys.
  31. Itinerant ferromagnetism: A quantum fluctuation driven FFLO analogue…

    www.tcm.phy.cam.ac.uk/~gjc29/talks/BirminghamTalk2009.pdf
    24 Aug 2020: 2g2. V 3k1,2,3,4. nk1nk2[nk3nk4]k1k2k3k4. New approach to fluctuation corrections.  Analytic strategy:1) Decouple in both the density and spin channels (previous approaches employ only ...  Consistent with a new crystalline phaseGrigera et al.,
  32. Quantum Order-by-Disorder in Strongly Correlated Metals Andrew G.…

    www.tcm.phy.cam.ac.uk/~gjc29/papers/GreenConduitKruger17.pdf
    24 Aug 2020: approach[37].The central idea is to calculate a generating functionfor the new type of order. ... It is this modification that accounts forthe generation of new interaction channels found in thediagrammatic analysis.
  33. PHYSICAL REVIEW B 84, 064513 (2011) First-principles calculation of…

    www.tcm.phy.cam.ac.uk/~gjc29/papers/ConduitMeir11i.pdf
    24 Aug 2020: A Monte Carlo algorithm that includes thermal phase andamplitude fluctuations of the superconducting order parameter is employed, and a new efficient algorithm isdescribed. ... Having developed the new formulafor the current and accompanying
  34. Multiparticle instability in a spin-imbalanced Fermi gas

    www.tcm.phy.cam.ac.uk/~gjc29/papers/WhiteheadConduit18i.pdf
    24 Aug 2020: This system allows fine control over the populationsand interactions of the fermions, allowing experiments to focuson the potential of new physics.
  35. PHYSICAL REVIEW B 92, 075106 (2015) Pseudopotential for the ...

    www.tcm.phy.cam.ac.uk/~gjc29/papers/LloydWilliamsNeedsConduit15.pdf
    24 Aug 2020: Ehrenreich and. D. Turnball (Academic, New York, 1964), Vol. 16.[44] P. ... tational Chemistry (Springer, New York, 2012).[48] R. M. Lee, G. J.
  36. PHYSICAL REVIEW A 95, 013633 (2017) Effective-range dependence of ...

    www.tcm.phy.cam.ac.uk/~gjc29/papers/SchonenbergConduit17.pdf
    24 Aug 2020: PHYSICAL REVIEW A 95, 013633 (2017). Effective-range dependence of resonant Fermi gases. L. M. Schonenberg and G. J. ConduitCavendish Laboratory, J.J. Thomson Avenue, Cambridge, CB3 0HE, United Kingdom. (Received 18 October 2016; published 27
  37. Band structure interpolation using optimized local orbitals from…

    www.tcm.phy.cam.ac.uk/~gjc29/papers/RatcliffConduitHineHaynes18.pdf
    24 Aug 2020: of systems consisting of many thousands of atoms [24,25],giving rise to new opportunities for applications in differentfields, as discussed, for example, in recent reviews on thesubject [26,27]. ... Zhang, R. Yu, H.-J. Zhang, X. Dai, and Z. Fang, New J.
  38. PHYSICAL REVIEW A 90, 033626 (2014) High-fidelity pseudopotentials…

    www.tcm.phy.cam.ac.uk/~gjc29/papers/BugnionLopezRiosNeedsConduit14.pdf
    24 Aug 2020: We tested the pseudopo-tential by examining the scattering phase shifts, the energy oftwo trapped particles, and the ground-state energy of a Fermigas, finding the new pseudopotentials to be approximately
  39. Tail-regression estimator for heavy-tailed distributions of known…

    www.tcm.phy.cam.ac.uk/~gjc29/papers/LopezRiosConduit19.pdf
    24 Aug 2020: PHYSICAL REVIEW E 99, 063312 (2019). Tail-regression estimator for heavy-tailed distributions of known tail indicesand its application to continuum quantum Monte Carlo data. Pablo López Ríos1,2, and Gareth J. Conduit21Max-Planck Institute for
  40. PHYSICAL REVIEW A 96, 023619 (2017) Effective-range dependence of ...

    www.tcm.phy.cam.ac.uk/~gjc29/papers/SchonenbergVerpoortConduit17.pdf
    24 Aug 2020: PHYSICAL REVIEW A 96, 023619 (2017). Effective-range dependence of two-dimensional Fermi gases. L. M. Schonenberg, P. C. Verpoort, and G. J. ConduitCavendish Laboratory, J.J. Thomson Avenue, Cambridge CB3 0HE, United Kingdom. (Received 13 April 2017;
  41. Au-Ge Alloys for Wide-Range Low-Temperature On-Chip Thermometry

    www.tcm.phy.cam.ac.uk/~gjc29/papers/DannVerpoortFerreiradeOliveiraRowleyDattaKarNarayanFordConduitNarayan19.pdf
    24 Aug 2020: Pepper, M. Kaveh,J. Griffiths, G. Jones, H. Beere, and D. Ritchie, Density-dependent thermopower oscillations in mesoscopic two-dimensional electron gases, New J.
  42. FerroElectricHeatCap.tex

    www.tcm.phy.cam.ac.uk/~gjc29/Thesis/Conduit.pdf
    24 Aug 2020: renormalisation of the electron mass, giving it a new effective mass given by. ... the opportunity atomic gases pose to explore new many-body physics. To motivate.

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