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Terry P. Orlando

Massachusetts Institute of Technology · US
Area of research
Atomic and Molecular Physics, and Optics · Artificial Intelligence
Research interest
Research interests include Physics, Qubit, Dephasing, Flux qubit, Microwave, and Quantum computer.
h-index
citations
4,966
works
28
NIH funding
primary concept
email

Recent publications

Superfluid stiffness of magic-angle twisted bilayer graphene
Nature 2025cited by 44position: middledoi
Deterministic remote entanglement using a chiral quantum interconnect
Nature Physics 2025cited by 22position: middledoi
On-demand directional microwave photon emission using waveguide quantum electrodynamics
Nature Physics 2023cited by 134position: middledoi
High-Fidelity, Frequency-Flexible Two-Qubit Fluxonium Gates with a Transmon Coupler
Physical Review X 2023cited by 122position: middledoi
Broadband squeezed microwaves and amplification with a Josephson travelling-wave parametric amplifier
Nature Physics 2023cited by 71position: middledoi
Evolution of <mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" display="inline"><mml:mn>1</mml:mn><mml:mo>/</mml:mo><mml:mi>f</mml:mi></mml:math> Flux Noise in Superconducting Qubits with Weak Magnetic Fields
Physical Review Letters 2023cited by 43position: middledoi
Hexagonal boron nitride as a low-loss dielectric for superconducting quantum circuits and qubits
Nature Materials 2022cited by 81position: middledoi
Quantum transport and localization in 1d and 2d tight-binding lattices
npj Quantum Information 2022cited by 62position: middledoi
Deep-Neural-Network Discrimination of Multiplexed Superconducting-Qubit States
Physical Review Applied 2022cited by 54position: middledoi
Lindblad Tomography of a Superconducting Quantum Processor
Physical Review Applied 2022cited by 42position: middledoi
Probing quantum information propagation with out-of-time-ordered correlators
Nature Physics 2021cited by 124position: middledoi
Microwave Package Design for Superconducting Quantum Processors
PRX Quantum 2021cited by 67position: middledoi
Characterizing and Optimizing Qubit Coherence Based on SQUID Geometry
Physical Review Applied 2020cited by 99position: middledoi
A quantum engineer's guide to superconducting qubits
Applied Physics Reviews 2019cited by 1,823position: middledoi
Non-Gaussian noise spectroscopy with a superconducting qubit sensor
Nature Communications 2019cited by 90position: middledoi
Tunable Coupling Scheme for Implementing High-Fidelity Two-Qubit Gates
Physical Review Applied 2018cited by 397position: middledoi
Coherent control of a hybrid superconducting circuit made with graphene-based van der Waals heterostructures
Nature Nanotechnology 2018cited by 175position: middledoi
Distinguishing Coherent and Thermal Photon Noise in a Circuit Quantum Electrodynamical System
Physical Review Letters 2018cited by 113position: middledoi
The flux qubit revisited to enhance coherence and reproducibility
Nature Communications 2016cited by 587position: middledoi
Coherence and Decay of Higher Energy Levels of a Superconducting Transmon Qubit
Physical Review Letters 2015cited by 208position: middledoi
Thermal and Residual Excited-State Population in a 3D Transmon Qubit
Physical Review Letters 2015cited by 180position: middledoi
Rotating-frame relaxation as a noise spectrum analyser of a superconducting qubit undergoing driven evolution
Nature Communications 2013cited by 155position: middledoi
Improving Quantum Gate Fidelities by Using a Qubit to Measure Microwave Pulse Distortions
Physical Review Letters 2013cited by 94position: middledoi
Spectroscopy of low-frequency noise and its temperature dependence in a superconducting qubit
Physical Review B 2012cited by 106position: middledoi
Dynamical Decoupling and Dephasing in Interacting Two-Level Systems
Physical Review Letters 2012cited by 38position: middledoi
Driven Dynamics and Rotary Echo of a Qubit Tunably Coupled to a Harmonic Oscillator
Physical Review Letters 2012cited by 31position: middledoi
Dynamical decoupling and dephasing in interacting two-level systems
Chalmers Publication Library (Chalmers University of Technology) 2012cited by 2position: middledoi
Improving quantum gate fidelities by using a qubit to measure microwave pulse distortions
DSpace@MIT (Massachusetts Institute of Technology) 2012cited by 2position: middledoi

Grants

No grants ingested yet.

Frequent collaborators

Simon Gustavsson · Massachusetts Institute of Technology28 papers (2012–2025)William D. Oliver · Massachusetts Institute of Technology28 papers (2012–2025)Jonilyn Yoder · Massachusetts Institute of Technology16 papers (2015–2023)David Kim · Massachusetts Institute of Technology14 papers (2018–2025)Fei Yan · Massachusetts Institute of Technology13 papers (2012–2019)Bethany M. Niedzielski · Massachusetts Institute of Technology13 papers (2020–2025)Bharath Kannan · Massachusetts Institute of Technology11 papers (2018–2025)Alexander Melville · MIT Lincoln Laboratory10 papers (2020–2023)Mollie E. Schwartz · Massachusetts Institute of Technology9 papers (2022–2025)Youngkyu Sung · Massachusetts Institute of Technology9 papers (2018–2023)Morten Kjærgaard · Massachusetts Institute of Technology8 papers (2018–2022)Jonas Bylander · Massachusetts Institute of Technology7 papers (2012–2013) · 7 papers (2012–2013) · 7 papers (2012–2013)Joel I-Jan Wang · Massachusetts Institute of Technology7 papers (2018–2025)Jochen Braumüller · Johannes Gutenberg University Mainz7 papers (2020–2023)Kyle Serniak · Massachusetts Institute of Technology6 papers (2022–2025)Antti Vepsäläinen · Massachusetts Institute of Technology6 papers (2020–2023)Roni Winik · Massachusetts Institute of Technology6 papers (2020–2023)Philip Krantz · Massachusetts Institute of Technology5 papers (2018–2023)