Uncertainty relations in implementation of unitary operations
arXiv:1709.06920 · doi:10.1103/PhysRevLett.121.110403
Abstract
The underlying mechanism in the implementation of unitary operation on a system with an external apparatus is studied. We implement the unitary time evolution in the system as a physical phenomenon that results from the interaction between the system and the apparatus. We investigate the fundamental limitation of a good implementation for the desired unitary time evolution. This limitation is manifested in the form of trade-off relations between the accuracy of the implementation and quantum fluctuation of energy in the external apparatus. Our relations clearly show that an accurate unitary operation requires large energy fluctuation inside the apparatus originated from quantum fluctuation.
15 pages, 3 figures
References in corpus (6)
- Experimental Test of Quantum Jarzynski Equality with a Trapped Ion System
- Universal Work Fluctuations during Shortcuts To Adiabaticity by Counterdiabatic Driving
- Information-to-work conversion by Maxwell's demon in a superconducting circuit-QED system
- Clock-Driven Quantum Thermal Engines
- Quantum Fisher Information as the Convex Roof of Variance
- Large Deviation implies First and Second Laws of Thermodynamics
Cited by in corpus (35)
- Nonreciprocal Quantum Batteries
- Resource theory of quantum scrambling
- Universal Sampling Lower Bounds for Quantum Error Mitigation
- Correlation in Catalysts Enables Arbitrary Manipulation of Quantum Coherence
- Work as an external quantum observable and an operational quantum work fluctuation theorem
- Steering heat engines: a truly quantum Maxwell demon
- Fundamental energy requirement of reversible quantum operations
- Qutrit quantum battery: comparing different charging protocols
- Energy-Consumption Advantage of Quantum Computation
- Coherence cost for violating conservation laws
- Universal limitations on implementing resourceful unitary evolutions
- Switching the function of the quantum Otto cycle in non-Markovian dynamics: heat engine, heater and heat pump
- Macroscopic Thermodynamic Reversibility in Quantum Many-Body Systems
- Uncertainty of quantum channels via modified generalized variance and modified generalized Wigner-Yanase-Dyson skew information
- Autonomous Quantum Devices: When Are They Realizable without Additional Thermodynamic Costs?
- Universal limitation of quantum information recovery: symmetry versus coherence
- Wigner-Araki-Yanase theorem for continuous and unbounded conserved observables
- Covariant catalysis requires correlations and good quantum reference frames degrade little
- Fisher information matrix as a resource measure in resource theory of asymmetry with general connected Lie group symmetry
- Robustness of controlled Hamiltonian approaches to unitary quantum gates
- Energy requirement for implementing unitary gates on energy-unbounded systems
- Fidelity-dissipation relations in quantum gates
- Smooth Metric Adjusted Skew Information Rates
- Quantum error correction meets continuous symmetries: fundamental trade-offs and case studies
- Beyond i.i.d. in the Resource Theory of Asymmetry: An Information-Spectrum Approach for Quantum Fisher Information
- Gibbs-preserving operations requiring infinite amount of quantum coherence
- A survey of universal quantum von Neumann architecture
- Coherence-variance uncertainty relation and coherence cost for quantum measurement under conservation laws
- A quantum reference frame size-accuracy trade-off for quantum channels
- A Fundamental Upper Bound for Signal to Noise Ratio of Quantum Detectors
- Tighter uncertainty relations based on modified weighted Wigner-Yanase-Dyson skew information of quantum channels
- Competition of decoherence and quantum speed limits for quantum-gate fidelity in the Jaynes-Cummings model
- Geometric Formulation of Universally Valid Uncertainty Relation for Error
- Quantum geometric tensor determines the pure-state i.i.d. conversion rate in the resource theory of asymmetry for any compact Lie group
- Exploring the Accuracy of Interferometric Quantum Measurements under Conservation Laws