supported by the National Natural Science Foundation of China(Grant nos.12075145 and 12211540002);the Science and Technology Commission of Shanghai Municipal(Grant no.2019SHZDZX01-ZX04)。
This article primarily establishes a two-soliton system and employs the Lewis-Riesenfeld invariant inverse control method to achieve shortcuts to adiabaticity(STA)technology.We study an atomic soliton Josephson juncti...
Project supported by the National Natural Science Foundation of China(Grant Nos.12375019 and 11974273)。
The control of adiabatic dynamics is essential for quantum manipulation.We investigate the effects of both periodic modulating field and linear sweeping field on adiabatic dynamics based on a non-reciprocal Landau-Zen...
supported by the NSF of China(Grant No.11405100);the Natural Science Basic Research Program in Shaanxi Province of China(Grant Nos.2020JM-507 and 2019JM-332)。
The fractional shortcut to adiabaticity(f-STA)for the production of quantum superposition states is proposed firstly via a three-level system with aΛ-type linkage pattern and a four-level system with a tripod structu...
Instant preheating as given in terms of window where adiabaticity is violated is a completely inefficient form of particle production if we use Padmandabhan scalar potentials. This necessitates using a very different ...
the Natural Science Foundation of Henan Province(Grant Nos.212300410388 and 212300410238);the Scientific Research Innovation Team of Xuchang University(Grant No.2022CXTD005);the National Scientific Research Project Cultivation Fund of Xuchang University(Grant No.2022GJPY001);the Key Research Project in Universities of Henan Province(Grant No.23B140010);the“316"Project Plan of Xuchang University.
Non-Hermitian dissipation dynamics,capable of turning the conventionally detrimental decoherence effects to useful resources for state engineering,is highly attractive to quantum information processing.In this work,an...
Horizon 2020 Framework Programme(101017088);Engineering and Physical Sciences Research Council(EP/T028475/1)。
We present a compact,highly tolerant vertical coupling structure,which can be a generic design that bridges the gap between conventional resonant couplers and adiabatic couplers for heterogeneously integrated devices....
The work was supported by the National Natural Science Foundation of China(Grant No.12075193).
Quantum batteries are energy storage devices that satisfy quantum mechanical principles.How to improve the battery’s performance such as stored energy and power is a crucial element in the quantum battery.Here,we inv...
National Key Research and Development Program of China(2017YFA0304204,2016YFA0302000);National Natural Science Foundation of China(12027806,91636107);Royal Society Newton International Fellowship(NF170876);PCSIRT(IRT_17R70);1331KSC。
Spin-squeezed state is a many-body entangled state of great interest for precision measurements.Although the absolute sensitivity at the standard quantum limit is better for a larger atom number,the greater dominance ...
This work was supported by the Key R&D Program of Guangdong Province(Grant No.2018B030326001);the National Natural Science Foundation of China(Grant No.11874156);Science and Technology Program of Guangzhou(Grant No.2019050001).
High-fidelity quantum gates are essential for large-scale quantum computation.However,any quantum manipulation will inevitably affected by noises,systematic errors and decoherence effects,which lead to infidelity of a...
Project supported by the Natural Science Foundation of Henan Province,China (Grant No. 212300410388);the “316” Project Plan of Xuchang University
Construction of optimal gate operations is significant for quantum computation.Here an efficient scheme is proposed for performing shortcut-based quantum gates on superconducting qubits in circuit quantum electrodynam...