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  1. 1401

    Efficient circuit-designs using spintronic devices by Deb, Suman

    Published 2019
    “…To be able to utilize the existing EDA tools for implementing spin-based logic circuits, it is important that the logic primitives in these data structures can be natively realized by spin devices. …”
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    Thesis
  2. 1402

    Van der Waals magnetic materials for current-induced control toward spintronic applications by Ryu, Jeongchun, Kajale, Shivam N., Sarkar, Deblina

    Published 2024
    “…Spintronics, leveraging electron spin for information processing, promises substantial advancements in energy-efficient computing. …”
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    Article
  3. 1403

    Quantum Monte Carlo study of the phase diagram of the two-dimensional uniform electron liquid by Azadi, S, Drummond, ND, Vinko, SM

    Published 2024
    “…We present a study of spin-unpolarized and spin-polarized two-dimensional uniform electron liquids using variational and diffusion quantum Monte Carlo (VMC and DMC) methods with SlaterJastrow-backflow trial wave functions. …”
    Journal article
  4. 1404

    Superconductivity from repulsive interactions in Bernal-stacked bilayer graphene by Wagner, G, Kwan, Y, Bultinck, N, Simon, S, Ashok Parameswaran, S

    Published 2024
    “…Intriguingly, superconductivity manifests only at nonzero magnetic fields, or when spin-orbit coupling is induced in BBG by coupling to a substrate. …”
    Journal article
  5. 1405

    Cationic distribution, exchange interactions, and relaxation dynamics in Zn-diluted MnCo2O4 nanostructures by Tiwari, Nidhi, Pramanik, P., Joshi, D. C., Sarkar, T., Pittala, S., Salman, O. O., Manga, M.-M., Thota, S.

    Published 2019
    “…Relaxation time τ follows the Power-Law variation with a dynamical critical exponent zν=6.17 and microscopic spin relaxation time τo=4.4×10−15s for xB=0.2 (for yA=0.1, zν=5.2 and τo=5.4×10−13s). …”
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    Journal Article
  6. 1406
  7. 1407
  8. 1408
  9. 1409
  10. 1410

    Optically detected magnetic resonance spectroscopic analyses on the role of magnetic ions in colloidal nanocrystals by Dehnel, Joanna, Harchol, Adi, Barak, Yahel, Meir, Itay, Horani, Faris, Shapiro, Arthur, Strassberg, Rotem, de Mello Donegá, Celso, Demir, Hilmi Volkan, Gamelin, Daniel R., Sharma, Kusha, Lifshitz, Efrat

    Published 2024
    “…Incorporating magnetic ions into semiconductor nanocrystals has emerged as a prominent research field for manipulating spin-related properties. The magnetic ions within the host semiconductor experience spin-exchange interactions with photogenerated carriers and are often involved in the recombination routes, stimulating special magneto-optical effects. …”
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    Journal Article
  11. 1411

    Polarized fragmenting jet functions in inclusive and exclusive jet production by Kang, Zhong-Bo, Xing, Hongxi, Zhao, Fanyi, Zhou, Yiyu

    Published 2024
    “…As examples, we provide numerical results for the spin asymmetry A TU , T cos ϕ S − ϕ ̂ S h $$ {A}_{TU,T}^{\cos \left({\phi}_S-{\hat{\phi}}_{S_h}\right)} $$ from polarized semi-inclusive hadron-in-jet production in polarized pp collisions at RHIC kinematics, where a transversely polarized quark would lead to the transverse spin of the final-state hadron inside the jet and is thus sensitive to the transversity fragmentation functions. …”
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    Article
  12. 1412

    Antiferromagnetic half-skyrmions and bimerons at room temperature by Jani, H, Lin, J-C, Chen, J, Harrison, J, Maccherozzi, F, Schad, J, Prakash, S, Eom, C-B, Ariando, A, Venkatesan, T, Radaelli, PG

    Published 2021
    “…Here we realize a family of topological antiferromagnetic spin textures in α-Fe2O3—an Earth-abundant oxide insulator—capped with a platinum overlayer. …”
    Journal article
  13. 1413

    Noise reduction in quantum communication by Yap, Jiun Yan.

    Published 2013
    “…However, the presence of long-term drift in the laser’s centered wavelength and filter’s pass-band will result in a mismatch between the signal’s wavelength and the band-pass of the filter. …”
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    Final Year Project (FYP)
  14. 1414
  15. 1415

    Synthesis and characterization of photocatalytic zinc oxide thin films by Liu, Yiwei.

    Published 2009
    “…The 4 reagents were zinc acetate dihydrate, DI water, H2O2 and PEG 200. The colloid was spin coated and spray coated onto glass substrates, then heated at 450oC for 1hr to obtain ZnO thin films. …”
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    Final Year Project (FYP)
  16. 1416
  17. 1417

    Error measurements for a quantum annealer using the one-dimensional Ising model with twisted boundaries by Chancellor, Nicholas, Crowley, Philip J. D., Durić, Tanja, Vinci, Walter, Amin, Mohammad H., Green, Andrew G., Warburton, Paul A., Aeppli, Gabriel

    Published 2023
    “…A finite length ferromagnetic chain with opposite spin polarization imposed at its two ends is one of the simplest frustrated spin models. …”
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    Journal Article
  18. 1418

    Quantum mechanical theory of dynamic nuclear polarization in solid dielectrics by Hu, Kan-Nian, Debelouchina, Galia Tzvetanova, Griffin, Robert Guy, Smith, Albert A.

    Published 2012
    “…Microwave driven dynamic nuclear polarization (DNP) is a process in which the large polarization present in an electron spin reservoir is transferred to nuclei, thereby enhancing NMR signal intensities. …”
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    Article
  19. 1419

    Direct observation of deterministic domain wall trajectory in magnetic network structures by Sethi, Pankaj, Murapaka, Chandrasekhar, Goolaup, Sarjoosing, Chen, Yun Jie, Leong, Siang Huei, Lew, Wen Siang

    Published 2018
    “…Controlling the domain wall (DW) trajectory in magnetic network structures is crucial for spin-based device related applications. The understanding of DW dynamics in network structures is also important for study of fundamental properties like observation of magnetic monopoles at room temperature in artificial spin ice lattice. …”
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    Journal Article
  20. 1420

    Solving nondeterministic polynomial complete problems optically and the design of its light source by Zheng, Mengying.

    Published 2013
    “…NP-complete problems are decision problems which remain unsolved for quite a long time. The problem solving time of NP-complete problems increases exponentially with respect to the problem scale. …”
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    Final Year Project (FYP)