Sensing, metrology, and quantum sensing
- X. Hu, F. Nori
Squeezed phonon states: Modulating quantum fluctuations of atomic displacements
Phys. Rev. Lett. 76, 2294 (1996). [PDF][Link][arXiv]
Short summary in the AIP Physics News. [Link][Link] - X. Hu, F. Nori
Quantum phonon optics: Coherent and squeezed atomic displacements
Phys. Rev. B 53, 2419 (1996). [PDF][Link][arXiv] - X. Hu, F. Nori
Phonon squeezed states generated by second-order Raman scattering
Phys. Rev. Lett. 79, 4605 (1997). [PDF][Link][arXiv] - X. Hu, F. Nori
Phonon squeezed states: Quantum noise reduction in solids
Physica B 263-264, pp. 16-29 (1999). [PDF][Link][arXiv] - F. Xue, Y.X. Liu, C.P. Sun, F. Nori
Two-mode squeezed states and entangled states of two mechanical resonators
Phys. Rev. B 76, 064305 (2007). [PDF][Link][arXiv] - A.M. Zagoskin, E. Il'ichev, M.W. McCutcheon, J. Young, F. Nori
Controlled Generation of Squeezed States of Microwave Radiation in a Superconducting Resonant Circuit
Phys. Rev. Lett. 101, 253602 (2008). [PDF][Link][arXiv] - J. Zhang, Y.X. Liu, F. Nori
Cooling and squeezing the fluctuations of a nanomechanical beam by indirect quantum feedback control
Phys. Rev. A 79, 052102 (2009). [PDF][Link][arXiv] - X. Wang, A. Miranowicz, Y.X. Liu, C.P. Sun, F. Nori
Sudden vanishing of spin squeezing under decoherence
Phys. Rev. A 81, 022106 (2010). [PDF][Link][arXiv] - J. Ma, X. Wang, C. P. Sun, F. Nori
Quantum spin squeezing
Physics Reports 509, pp. 89-165 (2011). [PDF][Link][arXiv] - X. Yin, J. Ma, X.G. Wang, F. Nori
Spin squeezing under non-Markovian channels by the hierarchy equation method
Phys. Rev. A 86, 012308 (2012). [PDF][Link][arXiv] - A.M. Zagoskin, E. Il’ichev, F. Nori
Heat cost of parametric generation of microwave squeezed states
Phys. Rev. A 85, 063811 (2012). [PDF][Link][arXiv] - A.M. Zagoskin, S. Savel'ev, F. Nori, F.V. Kusmarsev
Squeezing as the source of inefficiency in the quantum Otto cycle
Phys. Rev. B 86, 014501 (2012). [PDF][Link][arXiv] - L. Yu, J. Fan, S. Zhu, G. Chen, S. Jia, F. Nori
Creating a tunable spin squeezing via a time-dependent collective atom-photon coupling
Phys. Rev. A 89, 023838 (2014). [PDF][Link][arXiv] - Q.S. Tan, J.Q. Liao, X. Wang, F. Nori
Enhanced interferometry using squeezed thermal states and even or odd states
Phys. Rev. A 89, 053822 (2014). [PDF][Link][arXiv] - T. L. Wang, L. N. Wu, W. Yang, G. R. Jin, N. Lambert, F. Nori
Quantum Fisher information as a signature of the superradiant quantum phase transition
New Journal of Physics 16, 063039 (2014). [PDF][Link][arXiv] - X.Y. Lu, J.Q. Liao, L. Tian, F. Nori
Steady-state mechanical squeezing in an optomechanical system via Duffing nonlinearity
Phys. Rev. A 91, 013834 (2015). [PDF][Link][arXiv] - X.Y. Lu, Y. Wu, J.R. Johansson, H. Jing, J. Zhang, F. Nori
Squeezed Optomechanics with Phase-matched Amplification and Dissipation
Phys. Rev. Lett. 114, 093602 (2015). [PDF][Link][arXiv] -
M.F. Gonzalez-Zalba, S.N. Shevchenko, S. Barraud, J.R. Johansson, A.J. Ferguson, F. Nori, A.C. Betz
Gate-Sensing Coherent Charge Oscillations in a Silicon Field-Effect Transistor
Nano Lett. 16, pp. 1614-1619, (2016). [PDF][Link][arXiv][Suppl. Info.] -
Z.P. Liu, J. Zhang, S.K. Ozdemir, B. Peng, H. Jing, X.Y. Lu, C.W. Li, L. Yang, F. Nori, Y.X. Liu
Metrology with PT-Symmetric Cavities: Enhanced Sensitivity near the PT-Phase Transition
Phys. Rev. Lett. 117, 110802 (2016). [PDF][Link][arXiv][Suppl. Info.] -
R. Stassi, S. Savasta, L. Garziano, B. Spagnolo, F. Nori
Output field-quadrature measurements and squeezing in ultrastrong cavity-QED
New Journal of Physics 18, 123005 (2016). [PDF][Link][arXiv] -
G.Y. Chen, N. Lambert, Y.A. Shih, M.H. Liu, Y.N. Chen, F. Nori
Plasmonic bio-sensing for the Fenna-Matthews-Olson complex
Scientific Reports 7, 39720 (2017). [PDF][Link][arXiv] S. Maayani, R. Dahan, Y. Kligerman, E. Moses, A.U. Hassan, H. Jing, F. Nori, D.N. Christodoulides, T. Carmon
Flying couplers above spinning resonators generate irreversible refraction
Nature 558, pp. 569–572 (2018). [PDF][Link_1][Link_2]H. Jing, H. Lu, S.K. Ozdemir, T. Carmon, F. Nori
Nanoparticle sensing with a spinning resonator
Optica 5, pp. 1424-1430 (2018). [PDF][Link]A. Kowalewska-Kudłaszyk, S.I. Abo, G. Chimczak, J. Perina Jr., F. Nori, A. Miranowicz
Two-photon blockade and photon-induced tunneling generated by squeezing
Phys. Rev. A 100, 053857 (2019). [PDF][Link][arXiv]W. Qin, V. Macri, A. Miranowicz, S. Savasta, F. Nori
Emission of photon pairs by mechanical stimulation of the squeezed vacuum
Phys. Rev. A 100, 062501 (2019). [PDF][Link][arXiv]V. Macri, F. Nori, S. Savasta, D. Zueco
Spin squeezing by one-photon–two-atom excitation processes in atomic ensembles
Phys. Rev. A 101, 053818 (2020). [PDF][Link][arXiv]W. Qin, Y.H. Chen, X. Wang, A. Miranowicz, F. Nori
Strong spin squeezing induced by weak squeezing of light inside a cavity
Nanophotonics 9, pp. 4853–4868 (2020). [PDF][Link][arXiv]L. Bao, B. Qi, D. Dong, F. Nori
Fundamental limits for reciprocal and nonreciprocal non-Hermitian quantum sensing
Phys. Rev. A 103, 042418 (2021). [PDF][Link][arXiv]L. Tang, J. Tang, M. Chen, F. Nori, M. Xiao, K. Xia
Quantum Squeezing Induced Optical Nonreciprocity
Phys. Rev. Lett. 128, 083604 (2022). [PDF][Link][arXiv][Suppl. Info.]K. Xu, Y.R. Zhang, Z.H. Sun, H. Li, P. Song, Z. Xiang, K. Huang, H. Li, Y.H. Shi, C.T. Chen, X. Song, D. Zheng, F. Nori, H. Wang, H. Fan
Metrological Characterization of Non-Gaussian Entangled States of Superconducting Qubits
Phys. Rev. Lett. 128, 150501 (2022). [PDF][Link][arXiv][Suppl. Info.]W. Qin, A. Miranowicz, F. Nori
Beating the 3 dB Limit for Intracavity Squeezing and Its Application to Nondemolition Qubit Readout
Phys. Rev. Lett. 129, 123602 (2022). [PDF][Link][arXiv][Suppl. Info.]K.Y. Lee, J.D. Lin, A. Miranowicz, F. Nori, H.Y. Ku, Y.N. Chen
Steering-enhanced quantum metrology using superpositions of noisy phase shifts
Phys. Rev. Research 5, 013103 (2023). [PDF][Link][arXiv]F. Nori
Squeezed quantum hybrid system: Giant enhancement of magnon-phonon-spin interactions
Science China: Physics, Mechanics & Astronomy 66, 110331 (2023). [PDF][Link]Z.H. Sun, Y.Y. Wang, Y.R. Zhang, F. Nori, H. Fan
Variational generation of spin squeezing on one-dimensional quantum devices with nearest-neighbor interactions
Phys. Rev. Research 5, 043285 (2023). [PDF][Link][arXiv]W. Qin, F. Nori
Enhanced Interactions Using Quantum Squeezing
Physics 17, 64 (2024). [PDF][Link]E. Rinaldi, M.G. Lastre, S.G. Herreros, S. Ahmed, M. Khanahmadi, F. Nori, C.S. Munoz
Parameter estimation from quantum-jump data using neural networks
Quantum Sci. Technol. 9, 035018 (2024). [PDF][Link][arXiv]W. Qin, A.F. Kockum, C.S. Munoz, A. Miranowicz, F. Nori
Quantum amplification and simulation of strong and ultrastrong coupling of light and matter
Physics Reports 1078, pp. 1-59 (2024). [PDF][Link][arXiv] (published online May 23, 2024)L. Bao, B. Qi, F. Nori, D. Dong
Exponential sensitivity revival of noisy non-Hermitian quantum sensing with two-photon drives
Phys. Rev. Research 6, 023216 (2024). [PDF][Link][arXiv]Q. Zhang, J. Wang, T.X. Lu, R. Huang, F. Nori, H. Jing
Quantum weak force sensing with squeezed magnomechanics
Science China: Physics, Mechanics & Astronomy 67, 100313 (2024). [PDF][Link][arXiv]S.D. Zhang, J. Wang, Q. Zhang, Y.F. Jiao, Y.L. Zuo, S.K. Ozdemir, C.W. Qiu, F. Nori, H. Jing
Squeezing-enhanced quantum sensing with quadratic optomechanics
Optica Quantum 2, pp. 222-229 (2024). [PDF][Link][arXiv][Suppl. Info.]W. Qin, A. Miranowicz, F. Nori
Exponentially Improved Dispersive Qubit Readout with Squeezed Light
Phys. Rev. Lett. 133, 233605 (2024). [PDF][Link][arXiv][Suppl. Info.]C.W. Wu, M.C. Zhang, Y.L. Zhou, T. Chen, R. Huang, Y. Xie, W.B. Su, B.Q. Ou, W. Wu, A. Miranowicz, F. Nori, J. Zhang, H. Jing, P.X. Chen
Observation of quantum temporal correlations well beyond Lüders bound
Phys. Rev. Research 7, 013058 (2025). [PDF][Link][arXiv][Suppl. Info.]Q.Q. Hong, D. Dong, N.E. Henriksen, F. Nori, J. He, C.C. Shu
Precise quantum control of molecular rotation toward a desired orientation
Phys. Rev. Research 7, L012049 (2025). [PDF][Link][arXiv][Suppl. Info.]A. Ferreri, H. Wang, F. Nori, F.K. Wilhelm, D.E. Bruschi
Quantum heat engine based on quantum interferometry: The SU(1,1) Otto cycle
Phys. Rev. Research 7, 013284 (2025). [PDF][Link][arXiv]Z. Zhang, Z. Xu, R. Huang, X. Lu, F. Zhang, D. Li, S.K. Ozdemir, F. Nori, H. Bao, Y. Xiao, B. Chen, H. Jing, H. Shen
Chirality-induced quantum non-reciprocity
Nature Photonics 19, pp. 840-846 (2025). [PDF][Link][arXiv][Suppl. Info.]N. Zeng, T. Liu, K. Xia, Y.R. Zhang, F. Nori
Non-Hermitian sensing from the perspective of postselected measurements
Phys. Rev. Research 7, 043219 (2025). [PDF][Link][arXiv]Q. Zhang, J. Wang, Y.F. Jiao, H. Cheng, R. Huang, H.Z. Lin, F. Nori, H. Jing
Phase-Controlled Quantum Sensing of Weak Forces
Laser & Photonics Reviews 20, e01000 (2025). [PDF][Link][arXiv][Suppl. Info.]X. Tong, X. Qiu, X. Zhan, Q. Lin, K. Wang, F. Nori, P. Xue
Topological sensing in the dynamics of quantum walks with defects
Phys. Rev. B, 112, L241116 (2025). [PDF][Link][arXiv][Suppl. Info.]S. Wan, Y. Hu, R. Huang, S. Song, H. Yang, W. He, S. Hu, Z. Ren, Z. Yu, Y. Zuo, Y. Zhang, D. Yang, X. Cheng, F. Nori, H. Jing, T. Jiang
Spin-Selective Topological Effects without Encircling Exceptional Points
Phys. Rev. Lett. 136, 053801 (2026). [PDF][Link][Suppl. Info.]M. Du, Q. Bin, Q.Y. Qiu, F. Nori, X.Y. Lu
Exceptional Point Superradiant Lasing with Ultranarrow Linewidth
Phys. Rev. Lett. 136, 063602 (2026). [PDF][Link][arXiv][Suppl. Info.]I.I. Arkhipov, F. Nori, S.K. Ozdemir
Achieving the Quantum Fisher Information Bound in Pseudo-Hermitian Sensors
Phys. Rev. Lett. 136, 080802 (2026). [PDF][Link][arXiv][Suppl. Info.]D. Qu, I.I. Arkhipov, H. Gao, K. Wang, L. Xiao, F. Nori, P. Xue
Selective Chiral Multistate Switching via the Dynamic Interplay of Diabolic and Exceptional Points
Phys. Rev. Lett. 136, 086603 (2026). [PDF][Link][Suppl. Info.]Y.X. Yao, H.Y. Zhang, C.G. Liu, R.H. Chen, Q. Ai, F. Nori
Numerically exact quantum-simulation approach for two-dimensional spectroscopy of open quantum systems
Phys. Rev. A 113, 043729 (2026). [PDF][Link][arXiv]I. Toftul, S. Golat, F.J. Rodriguez-Fortuno, F. Nori, Y. Kivshar, K.Y. Bliokh
Radiation forces and torques in optics and acoustics
Rev. Mod. Phys. 98, 025002 (2026). [PDF][Link][arXiv]K.X. Yan, Y. Liu, Y. Xiao, J.H. Lin, J. Song, Y.H. Chen, F. Nori, Y. Xia
Giant-Atom Quantum Batteries: Lossless Energy Transfer via Interference Engineering
Phys. Rev. Lett. 136, 180401 (2026). [PDF][Link][arXiv][Suppl. Info.]T. Qian, J. Xu, R. Huang, K. Xia, Z. Xiong, H. Zhao, C. Wang, Y. Feng, J. Zheng, J. Li, H. Luo, S. Qin, F. Nori, H. Jing, Z. Wang
Operating a non-Hermitian atomic magnetometer with programmable digital electronics
Nature Communications 17, 6160 (2026). [PDF][Link_1][Link_2][Research Square][Suppl. Info.][Reviewers' Comments]X. Wang, I.I. Arkhipov, Q. Lin, H. Gao, D. Qu, L. Xiao, F. Nori, P. Xue
Observation of Restored Adiabatic State Transfer in Time-Modulated Non-Hermitian Systems
Nature Communications 17, 6333 (2026). [PDF][Link_1][Link_2][arXiv][Suppl. Info.][Reviewers' Comments]S. Zhang, D. Xiao, F. Wang, R. Huang, L. Yu, N. Zhou, K. He, X. Wu, F. Nori, H. Jing, X. Zhou
Cusp-singularity-enhanced Coriolis effect for sensitive chip-scale gyroscopes
Nature 653, pp. 700-706 (2026). [PDF][Link_1][Link_2][Suppl. Info.][Reviewers' Comments]Y.H. Mao, J.P. Xu, H.T. Ji, L.T. Yang, Z.Q. Tan, Y.C. Quan, T. Pu, W. Shao, J.Q. Hu, R. Huang, F. Nori, H. Jing
Chiral laser gyroscopes breaking the lock-in limit
Nature 654, pp. 926-931 (2026). [PDF][Link_1][Link_2][Suppl. Info.][Reviewers' Comments]B.B. Liu, D.Y. Wang, J. Tang, G. Chen, H. Jing, S.L. Su, F. Nori
Enhancing Nonreciprocity through Squeezing-Induced Symmetry Breaking
Phys. Rev. Lett. 136, 253602 (2026). [PDF][Link][arXiv][Suppl. Info.]S. Wei, Y. Zhai, Q. Lu, W. Yang, P. Gao, C. Wei, J. Song, F. Nori, T. Xin, G. Long
The Riemann Hypothesis manifested in dynamical quantum phase transitions
Nature Communications 17, 8163 (2026). [PDF][Link_1][Link_2][arXiv][Research Square][Suppl. Info.][Reviewers' Comments]X. Song, G. Li, T. Kuang, R. Huang, W. Xiong, X. Chen, X. Han, Y. Zhang, F. Nori, H. Jing, H. Luo, G. Xiao
Thermomechanically squeezed multi-mode phonon lasers with levitated optomechanics
Nature Communications 17, 8852 (2026). [PDF][Link_1][Link_2][Suppl. Info.][Reviewers' Comments]