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  2. Kerr combs bring purity to millimetre waves

    www-g.eng.cam.ac.uk/nms/publications/pdf/2021Ferrari_NandW.pdf
    1 Jul 2021: 489. news & views. NaTure PhoToNicS | VOL 15 | JULy 2021 | 487–492 | www.nature.com/naturephotonics. ... Such schemes produce unique signals emitted into new directions, where no other beams appear4.
  3. Raman spectroscopy of GaSe and InSe post-transition metal…

    www-g.eng.cam.ac.uk/nms/publications/pdf/2021Faraday.pdf
    12 Apr 2021: DOI: 10.1039/d0fd00007h. III–VI post-transition metal chalcogenides (InSe and GaSe) are a new class of layered. ... as MoS2,MoSe2, MoTe2, WS2 and WSe2, a new class of LMs, semiconducting post-transition metal chalcogenides (PTMCs), are increasingly
  4. In Situ Observation of Low‐Power Nano‐Synaptic Response in Graphene…

    www-g.eng.cam.ac.uk/nms/publications/pdf/2021Huitemp.pdf
    4 Aug 2021: The results provide a new method to explore nano-synaptic plasticity at the nanoscale, and point to GO as an important candidate for the fabrication of ultrasmall (<50 nm2) electronic synapses ... and threshold RS. Therefore, new materials need to be
  5. Covalently interconnected transition metal dichalcogenide networks…

    www-g.eng.cam.ac.uk/nms/publications/pdf/419_SamoriNEW.pdf
    26 Apr 2021: This energetic exfoliation procedure results in a mild formation of new defects and major propagation of. ... Here, we report a new molecular strategy to boost the electrical performance of transition metal dichalcogenide-based devices via the use of
  6. Confinement of long-lived interlayer excitons in WS2/WSe2…

    www-g.eng.cam.ac.uk/nms/publications/pdf/2021Montblanch.pdf
    16 Jun 2021: including Mott transition3, superfluidity4 and many-bodylocalisation5. Dipolar particles have gained attention as theyintroduce long-range anisotropic interactions to the explorationof new states of quantum matter6–8. ... Science 357, 1002–1010 (2017)
  7. Quantum Control of the Tin-Vacancy Spin Qubit in Diamond

    www-g.eng.cam.ac.uk/nms/publications/pdf/2021Debroux.pdf
    16 Dec 2021: Rev. Lett. 119, 253601(2017). [60] J. Görlitz et al., Spectroscopic Investigations of NegativelyCharged Tin-Vacancy Centres in Diamond, New J.
  8. 15 Feb 2021: 5678. 90():,;. Layered materials (LMs)1–4, such as single-layer (1L) transi-. tion metal dichalcogenides (1L-TMDs)5–8, are a promisingplatform for new photonic and optoelectronic devices.
  9. Tunable, Grating‐Gated, Graphene‐On‐Polyimide Terahertz Modulators

    www-g.eng.cam.ac.uk/nms/publications/pdf/409_new.pdf
    23 Mar 2021: In this new operating regime, not observed either in the bare-QCL frequency comb,[54] or while coupling the same QCL with an Au mirror,[58] we retrieve a stable, ... M. R. Peres, T. F. Heinz, New J. Phys. 2013, 15, 015009.
  10. High-responsivity graphene photodetectors integrated on silicon…

    www-g.eng.cam.ac.uk/nms/publications/pdf/2021Schuler.pdf
    18 Jun 2021: Today 15, 564–589 (2012). 90. Kittel, C. Introduction to solid state physics (Wiley New York, 1996).91.
  11. Low-Loss Integrated Nanophotonic Circuits with Layered Semiconductor…

    www-g.eng.cam.ac.uk/nms/publications/pdf/2021NanoLett.pdf
    27 Apr 2021: nanophotonics,58 and optoelectronics.912 Particularly im-portant for optoelectronics are LMs with direct bandgaps,such as monolayer (1L) TMDs, enabling new physics andapplications such as valleytronics,13 spintronics,14 ... F. AtomicallyThin MoS2: A New
  12. Terahertz Frequency Combs Exploiting an On-Chip, Solution-Processed,…

    www-g.eng.cam.ac.uk/nms/publications/pdf/405_new.pdf
    7 Jan 2021: Terahertz Frequency Combs Exploiting an On-Chip, Solution-Processed, Graphene-Quantum Cascade Laser Coupled-CavityFrancesco P. Mezzapesa, Katia Garrasi, Johannes Schmidt, Luca Salemi, Valentino Pistore, Lianhe Li,A. Giles Davies, Edmund H. Linfield,
  13. Graphene overcoats for ultra-high storage density magnetic media

    www-g.eng.cam.ac.uk/nms/publications/pdf/2021Dwivedi.pdf
    9 Jun 2021: ARTICLE. Graphene overcoats for ultra-high storage densitymagnetic mediaN. Dwivedi1,2,10, A. K. Ott3,4,10, K. Sasikumar5, C. Dou3, R. J. Yeo2,6, B. Narayanan5, U. Sassi3, D. De Fazio 3,. G. Soavi3, T. Dutta2,7, O. Balci 3, S. Shinde3, J. Zhang3, A.
  14. Supplementary information for Confinement of long-lived interlayer…

    www-g.eng.cam.ac.uk/nms/publications/pdf/2021Montblanch_supp.pdf
    16 Jun 2021: Nano Lett. 19, 4371-4379 (2019). [15] Terrones, H. et al. New first order Raman-active modes in few layered transition metal.
  15. Weak Distance Dependence of Hot-Electron-Transfer Rates at the…

    www-g.eng.cam.ac.uk/nms/publications/pdf/412_pub.pdf
    27 Jan 2021: F.; Lee, C.; Hone, J.; Shan, J.; Heinz, T. F. AtomicallyThin MoS2: A New Direct-Gap Semiconductor.
  16. Chip-Scalable, Room-Temperature, Zero-Bias, Graphene-Based Terahertz…

    www-g.eng.cam.ac.uk/nms/publications/pdf/2021Asgari_new.pdf
    16 Dec 2021: ABSTRACT: The scalable synthesis and transfer of large-areagraphene underpins the development of nanoscale photonicdevices ideal for new applications in a variety of fields, rangingfrom biotechnology, to wearable sensors for healthcare ... S.; Consolino,
  17. Graphene-Based Interconnects for Stable Dye-Sensitized Solar Modules

    www-g.eng.cam.ac.uk/nms/publications/pdf/414_ACS.pdf
    26 Jan 2021: 2018.2 Thisfostered the development of new PV technologies that bettersuit specific applications, when compared to conventional Sicells. ... Although the resulting vertical con-nections are less conductive than those based on Ag, implyinga reduction of
  18. Wafer-Scale Integration of Graphene-Based Photonic Devices

    www-g.eng.cam.ac.uk/nms/publications/pdf/412_ACSnano.pdf
    1 Mar 2021: Wafer-Scale Integration of Graphene-BasedPhotonic DevicesMarco A. Giambra,† Vaidotas Misěikis,† Sergio Pezzini, Simone Marconi, Alberto Montanaro,Filippo Fabbri, Vito Sorianello, Andrea C. Ferrari, Camilla Coletti,,‡ and Marco Romagnoli,‡.
  19. Shear and Breathing Modes of Layered Materials

    www-g.eng.cam.ac.uk/nms/publications/pdf/2021Pizzi.pdf
    21 Sep 2021: Shear and Breathing Modes of LayeredMaterialsGiovanni Pizzi, Silvia Milana, Andrea C. Ferrari, Nicola Marzari, and Marco Gibertini. Cite This: ACS Nano 2021, 15, 1250912534 Read Online. ACCESS Metrics & More Article Recommendations. ABSTRACT:

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