{"id":68,"date":"2022-08-02T15:30:49","date_gmt":"2022-08-02T15:30:49","guid":{"rendered":"http:\/\/localhost:8080\/wordpress\/?page_id=68"},"modified":"2022-08-02T15:37:27","modified_gmt":"2022-08-02T15:37:27","slug":"publications","status":"publish","type":"page","link":"http:\/\/localhost:8080\/wordpress\/publications\/","title":{"rendered":"Publications"},"content":{"rendered":"\n
All:<\/strong><\/p>\n\n\n\n Read more \u00bb<\/a><\/p>\n\n\n\n Read more \u00bb<\/a><\/p>\n\n\n\n2018<\/h3>\n\n\n\n
Noninvasive Thermometer Based on the Zero-Bias Anomaly of a Superconducting Junction for Ultrasensitive Calorimetry<\/strong>
arXiv:1807.08962<\/a>,\u00a0Phys. Rev. Appl.\u00a010<\/strong>, 054048 (2018)<\/a>.<\/li>
Hybrid rf SQUID qubit based on high kinetic inductance<\/strong>
Scientific Rep.\u00a08<\/strong>, 10033 (2018)<\/a>.<\/li>
Nanoscale Quantum Calorimetry with Electronic Temperature Fluctuations<\/strong>
arXiv:1805.02728<\/a>,\u00a0Phys. Rev. B.\u00a098<\/strong>, 205414 (2018)<\/a>.<\/li>
Nanosecond Thermometry with Josephson Junctions<\/strong>
Phys. Rev. Appl.\u00a010<\/strong>, 044068 (2018)<\/a>.<\/li>
Absorption refrigerators based on Coulomb-coupled single-electron systems<\/strong>
Phys. Rev. B.\u00a098<\/strong>, 045433 (2018)<\/a>.<\/li>
Determining the parameters of a random telegraph signal by digital low pass filtering<\/strong>
arXiv:1804.03956<\/a>,\u00a0Appl. Phys. Lett.\u00a0112<\/strong>, 243101 (2018)<\/a>.<\/li>
Anomalous Switching Current Distributions in Superconducting Weak Links<\/strong>
IEEE Transactions on Applied Superconductivity\u00a028<\/strong>, 1700305 (2018)<\/a>.<\/li>
Anomalous electronic heat capacity of copper nanowires at sub-Kelvin temperatures<\/strong>
arXiv:1606.02985<\/a>,\u00a0Phys. Rev. B\u00a097<\/strong>, 115422 (2018)<\/a>.<\/li>
Approximate solutions to Mathieu\u2019s equation<\/strong>
arXiv:1710.00657<\/a>,\u00a0Physica E\u00a0100<\/strong>, 24 (2018)<\/a>.<\/li>
Tunable photonic heat transport in a quantum heat valve<\/strong>
arXiv:1801.09312<\/a>\u00a0,\u00a0Nat. Phys.\u00a014<\/strong>, 991 (2018)<\/a>.<\/li>
Magnetometry with low resistance proximity Josephson junction<\/strong>
arXiv:1710.01500<\/a>,\u00a0J. Low Temp. Phys. (2018)<\/a>.<\/li>
Quantum noise of electron-phonon heat current<\/strong>
arXiv:1711.01844<\/a>,\u00a0J. Low Temp. Phys. (2018)<\/a>.<\/li>
Fast thermometry with a proximity Josephson junction<\/strong>
arXiv:1710.10082<\/a>,\u00a0Appl. Phys. Lett.\u00a0112<\/strong>, 013105 (2018)<\/a>.<\/li>
Model for calorimetric measurements in an open quantum system<\/strong>
Phys. Rev. A\u00a097<\/strong>, 052107 (2018)<\/a>.<\/li>
Thermodynamic fingerprints of non-Markovianity in a system of coupled superconducting qubits<\/strong>
Phys. Rev. A\u00a097<\/strong>, 032133 (2018)<\/a>.\u00a0<\/li><\/ul>\n\n\n\n2017<\/h3>\n\n\n\n
Induced unconventional superconductivity on the surface states of Bi2<\/sub>Te3<\/sub> topological insulator<\/strong>
Nature Comm. 8<\/strong>, 2019 (2017)<\/a>.<\/li>
Nonlocality and dynamic response of Majorana states in fermionic superfluids<\/strong>
New J. Phys. 19<\/strong>, 123026 (2017)<\/a>.<\/li>
Homogeneous superconductivity at the LaAlO3\/SrTiO3 interface probed by nanoscale transport<\/strong>
Phys. Rev. B 96<\/strong>, 184525 (2017)<\/a>.<\/li>
Hybrid single-electron turnstiles with thick superconducting electrodes for improved quasiparticle relaxation<\/strong>
arXiv:1709.09832<\/a>.<\/li>
Andreev levels as a quantum dissipative environment<\/strong>
arXiv:1705.06029,<\/a> Phys. Rev. B 96<\/strong>, 134509 (2017)<\/a>.<\/li>
Transport properties of ultrathin YBa2Cu3O_(7\u2212\\delta) nanowires: A route to single-photon detection<\/strong>
Phys. Rev. B 96<\/strong>, 064525 (2017)<\/a>.<\/li>
Thermal Relaxation in Titanium Nanowires: Signatures of Inelastic Electron-Boundary Scattering in Heat Transfer<\/strong>
arXiv:1612.09424<\/a>, J. Low Temp. Phys. 189<\/strong>, 204 (2017).<\/a><\/li>
Thermodynamic fingerprints of non-Markovianity<\/strong>
arXiv:1708.04458<\/a>.<\/li>
Observation of the Bloch-Siegert shift in a driven quantum-to-classical transition<\/strong>
arXiv:1610.09153<\/a>, Phys. Rev. B 96<\/strong>, 020501(R) (2017)<\/a>.<\/li>
Noise of a superconducting magnetic flux sensor based on a proximity Josephson junction<\/strong>
arXiv:1705.06448<\/a>, Sci. Rep. 7<\/strong>, 8011 (2017)<\/a>.<\/li>
Josephson effect through YBa2Cu3O_(7-delta)\/Au-encapsulated nanogaps<\/strong>
Phys. Rev. B 95<\/strong>, 174510 (2017)<\/a>.<\/li>
Study of in-plane electrical transport anisotropy of a-axis oriented YBa2Cu3O_(7-delta) nanodevices<\/strong>
Phys. Rev. B 95<\/strong>, 184505 (2017)<\/a>.<\/li>
Experimental Determination of Dynamical Lee-Yang Zeros<\/strong>
arXiv:1610.08669<\/a>, Phys. Rev. Lett. 118<\/strong>, 180601 (2017)<\/a>.<\/li>
Thermal Conductance of a Single-Electron Transistor<\/strong>
arXiv:1704.02622<\/a>, Phys. Rev. Lett. 119<\/strong>, 077701 (2017)<\/a>, Featured in Physics<\/a>, Editors’ Suggestion<\/li>
Nanosecond thermometry with Josephson junction<\/strong>
arXiv:1704.04762<\/a><\/li>
Characterizing superconducting \ufb01lters using residual microwave background<\/strong>
arXiv:1609.07376<\/a>, Supercond. Sci. Technol. 30<\/strong>, 055006 (2017).<\/a><\/li>
Multiplexing Superconducting Qubit Circuit for Single Microwave Photon Generation<\/strong>
J. Low Temp. Phys. 189<\/strong>, 60-75 <\/strong>(2017)<\/a>.<\/li>
Correlated vs. uncorrelated noise acting on a quantum refrigerator<\/strong>
Phys. Rev. B 96<\/strong>, 115408 (2017)<\/a>.<\/li>
Coupled qubits as a quantum heat switch<\/strong>
Quantum Sci. Technol. 2<\/strong> 044007 (2017) <\/a><\/li>
High-Transparency Al\/Bi2<\/sub>Te3<\/sub> Double-Barrier Heterostructures<\/strong>
IEEE Trans. Appl. Supercond. 27<\/strong>, 7756380 (2017)<\/a>.<\/li>
Feedback controlled heat transport in quantum devices: Theory and solid state experimental proposal<\/strong>
arXiv:1702.05604<\/a><\/li>
Thermal conductance of Nb thin films at sub-kelvin temperatures<\/strong>
arXiv:1609.06519<\/a>, Sci. Rep. 7<\/strong>, 41728 (2017)<\/a>.<\/li>
Reversing the Landauer’s erasure: single-electron Maxwell’s demon operating at the limit of thermodynamic efficiency<\/strong>
arXiv:1701.05266<\/a>, Phys. Stat. Solidi B 254<\/strong>, 1600677 (2017)<\/a>.<\/li>
Traceable Coulomb Blockade Thermometry<\/strong>
arXiv:1609.06943<\/a>, Metrologia 54<\/strong>, 69 (2017).<\/a><\/li>
Interplay of the inverse proximity effect and magnetic field in out-of-equilibrium single-electron devices<\/strong>
arXiv:1612.04116<\/a>, Phys. Rev. Appl. 7<\/strong>, 054021 (2017)<\/a>.<\/li><\/ul>\n\n\n\n2016<\/h3>\n\n\n\n
Nonlocality and dynamic response of Majorana states in fermionic superfluids<\/strong>
arXiv:1606.09546<\/a><\/li>
Fluctuation relation for qubit calorimetry<\/strong>
arXiv:1606.02984<\/a>, Phys. Rev. E 94<\/strong>, 062127 (2016)<\/a>.<\/li>
Distribution of Current Fluctuations in a Bistable Conductor<\/strong>
arXiv:1606.06839<\/a>, Phys. Rev. B 94<\/strong>, 241407(R) (2016)<\/a>.<\/li>
High-performance electronic cooling with superconducting tunnel junctions<\/strong>
arXiv:1608.06410<\/a>, C. R. Physique 17<\/strong>, 1139 (2016)<\/a>.<\/li>
InAs Nanowire with Epitaxial Aluminum as a Single-Electron Transistor with Fixed Tunnel Barriers<\/strong>
arXiv:1601.01149<\/a>, Phys. Rev. Appl. 6<\/strong>, 054017 (2016)<\/a>.<\/li>
Otto refrigerator based on a superconducting qubit: classical and quantum performance<\/strong>
arXiv:1610.02776<\/a>, Phys. Rev. B 94<\/strong>, 184503 (2016)<\/a>, Editor’s Suggestion.<\/li>
Thermodynamics and efficiency of an autonomous on-chip Maxwell\u2019s demon<\/strong>
arXiv:1509.08288<\/a>, Scientific Rep. 6<\/strong>, 21126 (2016)<\/a>.<\/li>
Hot spot formation in electron-doped PCCO nanobridges<\/strong>
Phys. Rev. B