Susanna M. Thon, Ph.D. - Related publications

2010 Physics University of California, Santa Barbara, Santa Barbara, CA, United States 
Condensed Matter Experimental Physics
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50 most relevant papers in past 60 days:
Year Citation  Score
2018 Kim JH, Aghaeimeibodi S, Richardson CJK, Leavitt RP, Waks E. Super-radiant emission from quantum dots in a nanophotonic waveguide. Nano Letters. PMID 29966093 DOI: 10.1021/acs.nanolett.8b01133   
2018 Cao W, Xiang C, Yang Y, Chen Q, Chen L, Yan X, Qian L. Highly stable QLEDs with improved hole injection via quantum dot structure tailoring. Nature Communications. 9: 2608. PMID 29973590 DOI: 10.1038/s41467-018-04986-z   
2018 Nicolí G, Ferguson MS, Rössler C, Wolfertz A, Blatter G, Ihn T, Ensslin K, Reichl C, Wegscheider W, Zilberberg O. Cavity-Mediated Coherent Coupling between Distant Quantum Dots. Physical Review Letters. 120: 236801. PMID 29932683 DOI: 10.1103/PhysRevLett.120.236801   
2018 Barak Y, Meir I, Shapiro A, Jang Y, Lifshitz E. Fundamental Properties in Colloidal Quantum Dots. Advanced Materials (Deerfield Beach, Fla.). e1801442. PMID 29923230 DOI: 10.1002/adma.201801442   
2018 Huber D, Reindl M, Covre da Silva SF, Schimpf C, Martín-Sánchez J, Huang H, Piredda G, Edlinger J, Rastelli A, Trotta R. Strain-Tunable GaAs Quantum Dot: A Nearly Dephasing-Free Source of Entangled Photon Pairs on Demand. Physical Review Letters. 121: 033902. PMID 30085806 DOI: 10.1103/PhysRevLett.121.033902   
2018 Sun S, Kim H, Luo Z, Solomon GS, Waks E. A single-photon switch and transistor enabled by a solid-state quantum memory. Science (New York, N.Y.). 361: 57-60. PMID 29976819 DOI: 10.1126/science.aat3581   
2018 Chen Y, Zopf M, Keil R, Ding F, Schmidt OG. Highly-efficient extraction of entangled photons from quantum dots using a broadband optical antenna. Nature Communications. 9: 2994. PMID 30065263 DOI: 10.1038/s41467-018-05456-2   
2018 Liu Y, Xu Q, Chang S, Lv Z, Huang S, Jiang F, Zhang X, Yang G, Tong X, Hao S, Ren Y. Brightly luminescent and color-tunable green-violet-emitting halide perovskite CHNHPbBr colloidal quantum dots: an alternative to lighting and display technology. Physical Chemistry Chemical Physics : Pccp. PMID 30022197 DOI: 10.1039/c8cp02776e   
2018 Kurpiers P, Magnard P, Walter T, Royer B, Pechal M, Heinsoo J, Salathé Y, Akin A, Storz S, Besse JC, Gasparinetti S, Blais A, Wallraff A. Deterministic quantum state transfer and remote entanglement using microwave photons. Nature. 558: 264-267. PMID 29899478 DOI: 10.1038/s41586-018-0195-y   
2018 Zhang X, Bell BA, Mahendra A, Xiong C, Leong PHW, Eggleton BJ. Integrated silicon nitride time-bin entanglement circuits. Optics Letters. 43: 3469-3472. PMID 30067687   
2018 Modi K, Pati AK, Sen De A, Sen U. Masking Quantum Information is Impossible. Physical Review Letters. 120: 230501. PMID 29932728 DOI: 10.1103/PhysRevLett.120.230501   
2018 Yuan X, Weyhausen-Brinkmann F, Martín-Sánchez J, Piredda G, Křápek V, Huo Y, Huang H, Schimpf C, Schmidt OG, Edlinger J, Bester G, Trotta R, Rastelli A. Uniaxial stress flips the natural quantization axis of a quantum dot for integrated quantum photonics. Nature Communications. 9: 3058. PMID 30076301 DOI: 10.1038/s41467-018-05499-5   
2018 Ham BS. A wavelength-convertible quantum memory: Controlled echo. Scientific Reports. 8: 10675. PMID 30013123 DOI: 10.1038/s41598-018-28776-1   
2018 Peng Y, Qiao Y, Xiang T, Chen X. Manipulation of the spontaneous parametric down-conversion process in space and frequency domains via wavefront shaping. Optics Letters. 43: 3985-3988. PMID 30106933   
2018 Bohn BJ, Tong Y, Gramlich M, Lai ML, Döblinger M, Wang K, Hoye RLZ, Muller-Buschbaum P, Stranks SD, Urban AS, Polavarapu L, Feldmann J. Boosting tunable blue luminescence of halide perovskite nanoplatelets through post-synthetic surface trap repair. Nano Letters. PMID 29990435 DOI: 10.1021/acs.nanolett.8b02190   
2018 Aguilar EA, Farkas M, Martínez D, Alvarado M, Cariñe J, Xavier GB, Barra JF, Cañas G, Pawłowski M, Lima G. Certifying an Irreducible 1024-Dimensional Photonic State Using Refined Dimension Witnesses. Physical Review Letters. 120: 230503. PMID 29932702 DOI: 10.1103/PhysRevLett.120.230503   
2018 Swabeck JK, Fischer S, Bronstein ND, Alivisatos AP. Broadband sensitization of lanthanide emission with indium phosphide quantum dots for visible to NIR downshifting. Journal of the American Chemical Society. PMID 29924609 DOI: 10.1021/jacs.8b02612   
2018 Jambrina PG, Menéndez M, Aoiz FJ. Angular momentum-scattering angle quantum correlation: a generalized deflection function. Chemical Science. 9: 4837-4850. PMID 29910936 DOI: 10.1039/c7sc05489k   
2018 Aragoneses A, Islam NT, Eggleston M, Lezama A, Kim J, Gauthier DJ. Bounding the outcome of a two-photon interference measurement using weak coherent states. Optics Letters. 43: 3806-3809. PMID 30106888   
2018 MacLellan B, Roztocki P, Kues M, Reimer C, Romero Cortés L, Zhang Y, Sciara S, Wetzel B, Cino A, Chu ST, Little BE, Moss DJ, Caspani L, Azaña J, Morandotti R. Generation and Coherent Control of Pulsed Quantum Frequency Combs. Journal of Visualized Experiments : Jove. PMID 29939165 DOI: 10.3791/57517   
2018 Seo M, Roulleau P, Roche P, Glattli DC, Sanquer M, Jehl X, Hutin L, Barraud S, Parmentier FD. Strongly Correlated Charge Transport in Silicon Metal-Oxide-Semiconductor Field-Effect Transistor Quantum Dots. Physical Review Letters. 121: 027701. PMID 30085716 DOI: 10.1103/PhysRevLett.121.027701   
2018 Bahmani Jalali H, Mohammadi Aria M, Dikbas UM, Sadeghi S, Ganesh Kumar B, Sahin M, Kavakli IH, Ow-Yang CW, Nizamoglu S. Effective Neural Photostimulation Using Indium-Based Type-II Quantum Dots. Acs Nano. PMID 30020770 DOI: 10.1021/acsnano.8b02976   
2018 Bahmani Jalali H, Mohammadi Aria M, Dikbas UM, Sadeghi S, Ganesh Kumar B, Sahin M, Kavakli IH, Ow-Yang CW, Nizamoglu S. Effective Neural Photostimulation Using Indium-Based Type-II Quantum Dots. Acs Nano. PMID 30020770 DOI: 10.1021/acsnano.8b02976   
2018 Thomas EM, Ghimire S, Kohara R, Anil AN, Yuyama KI, Takano Y, Thomas KG, Biju VP. Blinking Suppression in Highly-Excited CdSe/ZnS Quantum Dots by Electron Transfer under Large Positive Gibbs (Free) Energy Change. Acs Nano. PMID 30103604 DOI: 10.1021/acsnano.8b03010   
2018 Dibos AM, Raha M, Phenicie CM, Thompson JD. Atomic Source of Single Photons in the Telecom Band. Physical Review Letters. 120: 243601. PMID 29956997 DOI: 10.1103/PhysRevLett.120.243601   
2018 Rossi A, Klochan J, Timoshenko J, Hudson FE, Möttönen M, Rogge S, Dzurak AS, Kashcheyevs V, Tettamanzi GC. Gigahertz Single-Electron Pumping Mediated by Parasitic States. Nano Letters. PMID 29916248 DOI: 10.1021/acs.nanolett.8b00874   
2018 Tao K, Fan Z, Sun L, Makam P, Tian Z, Ruegsegger M, Shaham-Niv S, Hansford D, Aizen R, Pan Z, Galster S, Ma J, Yuan F, Si M, Qu S, et al. Quantum confined peptide assemblies with tunable visible to near-infrared spectral range. Nature Communications. 9: 3217. PMID 30104564 DOI: 10.1038/s41467-018-05568-9   
2018 An XB, Li HW, Yin ZQ, Hu MJ, Huang W, Xu BJ, Wang S, Chen W, Guo GC, Han ZF. Experimental three-party quantum random number generator based on dimension witness violation and weak measurement. Optics Letters. 43: 3437-3440. PMID 30004524   
2018 Li R, Petit L, Franke DP, Dehollain JP, Helsen J, Steudtner M, Thomas NK, Yoscovits ZR, Singh KJ, Wehner S, Vandersypen LMK, Clarke JS, Veldhorst M. A crossbar network for silicon quantum dot qubits. Science Advances. 4: eaar3960. PMID 29984303 DOI: 10.1126/sciadv.aar3960   
2018 Ghosh HN, Maiti S, Dana J. Correlating Charge Carrier Dynamics with Efficiency in Quantum Dot Solar Cells: Can Excitonics Lead to Highly Efficient Devices? Chemistry (Weinheim An Der Bergstrasse, Germany). PMID 29992637 DOI: 10.1002/chem.201801853   
2018 Li Q, Bai J, Zhang T, Nie C, Duan J, Tang Q. CdZnSe@ZnSe colloidal alloy quantum dots for high-efficiency all-inorganic perovskite solar cells. Chemical Communications (Cambridge, England). PMID 30083698 DOI: 10.1039/c8cc05517c   
2018 Bar-Elli O, Steinitz D, Yang G, Tenne R, Ludwig A, Kuo Y, Triller A, Weiss S, Oron D. Rapid Voltage Sensing with Single Nanorods via the Quantum Confined Stark Effect. Acs Photonics. 5: 2860-2867. PMID 30042952 DOI: 10.1021/acsphotonics.8b00206   
2018 Hoshi K, Chiba T, Sato J, Hayashi Y, Takahashi Y, Ebe H, Ohisa S, Kido J. Purification of Perovskite Quantum-Dots Using Low Dielectric Constant Washing Solvent "Diglyme" for Highly Efficient Light-Emitting Devices. Acs Applied Materials & Interfaces. PMID 29968455 DOI: 10.1021/acsami.8b05954   
2018 Cheng JQ, Xu JB. Multipartite entanglement, quantum coherence, and quantum criticality in triangular and Sierpiński fractal lattices. Physical Review. E. 97: 062134. PMID 30011478 DOI: 10.1103/PhysRevE.97.062134   
2018 Lee CM, Selby JH. A no-go theorem for theories that decohere to quantum mechanics. Proceedings. Mathematical, Physical, and Engineering Sciences. 474: 20170732. PMID 29977126 DOI: 10.1098/rspa.2017.0732   
2018 Bhattacharyya B, Pandit T, Rajasekar GP, Pandey A. Optical Transparency Enabled by Anomalous Stokes Shift in Visible Light-Emitting CuAlS-Based Quantum Dots. The Journal of Physical Chemistry Letters. 4451-4456. PMID 30037228 DOI: 10.1021/acs.jpclett.8b01787   
2018 Bhattacharyya B, Pandit T, Rajasekar GP, Pandey A. Optical Transparency Enabled by Anomalous Stokes Shift in Visible Light-Emitting CuAlS-Based Quantum Dots. The Journal of Physical Chemistry Letters. 4451-4456. PMID 30037228 DOI: 10.1021/acs.jpclett.8b01787   
2018 Shulenberger KE, Bischof TS, Caram JR, Utzat H, Coropceanu I, Nienhaus L, Bawendi MG. Multiexciton Lifetimes Reveal Triexciton Emission Pathway in CdSe Nanocrystals. Nano Letters. PMID 30016109 DOI: 10.1021/acs.nanolett.8b02080   
2018 Safavi-Naini A, Lewis-Swan RJ, Bohnet JG, Gärttner M, Gilmore KA, Jordan JE, Cohn J, Freericks JK, Rey AM, Bollinger JJ. Verification of a Many-Ion Simulator of the Dicke Model Through Slow Quenches across a Phase Transition. Physical Review Letters. 121: 040503. PMID 30095931 DOI: 10.1103/PhysRevLett.121.040503   
2018 Wu KD, Hou Z, Zhao YY, Xiang GY, Li CF, Guo GC, Ma J, He QY, Thompson J, Gu M. Experimental Cyclic Interconversion between Coherence and Quantum Correlations. Physical Review Letters. 121: 050401. PMID 30118306 DOI: 10.1103/PhysRevLett.121.050401   
2018 Zhang W, Caldarola M, Lu X, Orrit M. Plasmonic Enhancement of Two-Photon-Excited Luminescence of Single Quantum Dots by Individual Gold Nanorods. Acs Photonics. 5: 2960-2968. PMID 30057930 DOI: 10.1021/acsphotonics.8b00306   
2018 Andrews DL, Forbes KA. Quantum features in the orthogonality of optical modes for structured and plane-wave light. Optics Letters. 43: 3249-3252. PMID 30004478   
2018 Brumberg A, Diroll BT, Nedelcu G, Sykes ME, Liu Y, Harvey SM, Wasielewski MR, Kovalenko MV, Schaller RD. Material Dimensionality Effects on Electron Transfer Rates Between CsPbBr3 and CdSe Nanoparticles. Nano Letters. PMID 29944381 DOI: 10.1021/acs.nanolett.8b01238   
2018 Gao J, Qiao LF, Jiao ZQ, Ma YC, Hu CQ, Ren RJ, Yang AL, Tang H, Yung MH, Jin XM. Experimental Machine Learning of Quantum States. Physical Review Letters. 120: 240501. PMID 29956972 DOI: 10.1103/PhysRevLett.120.240501   
2018 Roy A, Shimshoni E, Frydman A. Quantum Criticality at the Superconductor-Insulator Transition Probed by the Nernst Effect. Physical Review Letters. 121: 047003. PMID 30095933 DOI: 10.1103/PhysRevLett.121.047003   
2018 McVey BFP, König D, Cheng X, O'Mara PB, Seal P, Tan X, Tahini HA, Smith SC, Gooding JJ, Tilley RD. Synthesis, optical properties and theoretical modelling of discrete emitting states in doped silicon nanocrystals for bioimaging. Nanoscale. PMID 30090899 DOI: 10.1039/c8nr05071f   
2018 Sug JY, Lee SH. The Temperature Dependences of the Electron-Piezoelectric Potential Phonon Interacting System of Quasi Two Dimensional System in GaN and ZnS. Journal of Nanoscience and Nanotechnology. 18: 7255-7258. PMID 29954569 DOI: 10.1166/jnn.2018.15495   
2018 Ran L, Li H, Wu W, Gao Y, Chai Z, Xiao J, Li Q, Kong D. Ultrafast optical properties of type-II CdZnS/ZnSe core-shell quantum dots. Optics Express. 26: 18480-18491. PMID 30114027   
2018 Caprasecca S, Corni S, Mennucci B. Shaping excitons in light-harvesting proteins through nanoplasmonics. Chemical Science. 9: 6219-6227. PMID 30090309 DOI: 10.1039/c8sc01162a   
2018 Zheng W, Ma Z, Wang H, Fei SM, Peng X. Experimental Demonstration of Observability and Operability of Robustness of Coherence. Physical Review Letters. 120: 230504. PMID 29932730 DOI: 10.1103/PhysRevLett.120.230504