Search Results - "Yousefjani, Rozhin"
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1
Parallel entangling gate operations and two-way quantum communication in spin chains
Published in Quantum (Vienna, Austria) (26-05-2021)“…The power of a quantum circuit is determined through the number of two-qubit entangling gates that can be performed within the coherence time of the system. In…”
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2
Floquet-induced localization in long-range many-body systems
Published in Physical review research (01-02-2023)“…The fate of many-body localization in long-range interacting systems is not fully settled. For instance, the phase boundary between ergodic and many-body…”
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3
Voltage-controlled Hubbard spin transistor
Published in Physical review research (01-11-2021)“…Transistors are key elements for enabling computational hardware in both classical and quantum domains. Here we propose a voltage-gated spin transistor using…”
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4
Mobility edge in long-range interacting many-body localized systems
Published 01-02-2023“…As disorder strength increases in quantum many-body systems a new phase of matter, the so-called anybody localization, emerges across the whole spectrum. This…”
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5
Long-range interacting Stark many-body probes with Super-Heisenberg precision
Published 03-11-2023“…Chin. Phys. B, 2023, 32 (10): 100313 In contrast to interferometry-based quantum sensing, where interparticle interaction is detrimental, quantum many-body…”
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6
Stark localization as a resource for weak-field sensing with super-Heisenberg precision
Published 10-07-2023“…Phys. Rev. Lett. 131, 010801(2023) Gradient fields can effectively suppress particle tunneling in a lattice and localize the wave function at all energy…”
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7
Floquet-induced localization in long-range many-body systems
Published 11-02-2023“…Phys. Rev. Research 5, 013094 (2023) The fate of many-body localization in long-range interacting systems is not fully settled. For instance, the phase…”
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8
Parallel entangling gate operations and two-way quantum communication in spin chains
Published 25-05-2021“…Quantum 5, 460 (2021) The power of a quantum circuit is determined through the number of two-qubit entangling gates that can be performed within the coherence…”
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9
Simultaneous multiple-users quantum communication across a spin chain channel
Published 17-07-2020“…Phys. Rev. A 102, 012418 (2020) The time evolution of spin chains has been extensively studied for transferring quantum states between different registers of a…”
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10
Stark Localization as a Resource for Weak-Field Sensing with Super-Heisenberg Precision
Published in Physical review letters (07-07-2023)“…Gradient fields can effectively suppress particle tunneling in a lattice and localize the wave function at all energy scales, a phenomenon known as Stark…”
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11
Voltage-controlled Hubbard spin transistor
Published 02-12-2021“…Physical Review Research 3, 043142 (2021) Transistors are key elements for enabling computational hardware in both classical and quantum domains. Here, we…”
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12
Estimating phase with a random generator: Strategies and resources in multiparameter quantum metrology
Published 17-05-2017“…Phys. Rev. A 95, 062307 (2017) Quantum metrology aims to exploit quantum phenomena to overcome classical limitations in the estimation of relevant parameters…”
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13
Discrete Time Crystal Phase as a Resource for Quantum Enhanced Sensing
Published 01-05-2024“…Discrete time crystals are a special phase of matter in which time translational symmetry is broken through a periodic driving pulse. Here, we first propose…”
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14
Nonlinearity-enhanced quantum sensing in Stark probes
Published 16-04-2024“…Stark systems in which a linear gradient field is applied across a many-body system have recently been harnessed for quantum sensing. Here, we explore sensing…”
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15
Non-Hermitian Discrete Time Crystals
Published 30-10-2024“…Discrete time crystals (DTC) exhibit a special non-equilibrium phase of matter in periodically driven many-body systems with spontaneous breaking of time…”
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16
Review: Quantum Metrology and Sensing with Many-Body Systems
Published 27-08-2024“…The main power of quantum sensors is achieved when the probe is composed of several particles. In this situation, quantum features such as entanglement…”
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