Publications
"Absence of phonon softening across a charge density wave transition due to quantum fluctuations." Proceedings of the National Academy of Sciences 122 (2025): e2507135122.
"Picosecond expansion in LaAlO₃ resonantly driven by infrared-active phonons." Physical Review Letters 135 (2025): 116906.
"Picosecond expansion in LaAlO₃ resonantly driven by infrared-active phonons." Physical Review Letters 135 (2025): 116906.
"Picosecond expansion in LaAlO₃ resonantly driven by infrared-active phonons." Physical Review Letters 135 (2025): 116906.
"Picosecond expansion in LaAlO₃ resonantly driven by infrared-active phonons." Physical Review Letters 135 (2025): 116906.
"Picosecond expansion in LaAlO₃ resonantly driven by infrared-active phonons." Physical Review Letters 135 (2025): 116906.
"Quantum decoherence by magnetic fluctuations in a magnetic topological insulator." npj Quantum Materials 10 (2025): 81.
"Coexistence of antiferrodistortive and polar order in a superconducting SrTiO₃ film." Physical Review Materials 8 (2024): L051801.
"Picosecond volume expansion drives a later-time insulator–metal transition in a nano-textured Mott insulator." Nature Physics 20 (2024): 807-814.
"Picosecond volume expansion drives a later-time insulator–metal transition in a nano-textured Mott insulator." Nature Physics 20 (2024): 807-814.
"Picosecond volume expansion drives a later-time insulator–metal transition in a nano-textured Mott insulator." Nature Physics 20 (2024): 807-814.
"Picosecond volume expansion drives a later-time insulator–metal transition in a nano-textured Mott insulator." Nature Physics 20 (2024): 807-814.
"Picosecond volume expansion drives a later-time insulator–metal transition in a nano-textured Mott insulator." Nature Physics 20 (2024): 807-814.
"Picosecond volume expansion drives a later-time insulator–metal transition in a nano-textured Mott insulator." Nature Physics 20 (2024): 807-814.
"Picosecond volume expansion drives a later-time insulator–metal transition in a nano-textured Mott insulator." Nature Physics 20 (2024): 807-814.
"Electronic nematic order in the normal state of strontium ruthenate." Physical Review B 108 (2023): L081105.
"Electronic nematic order in the normal state of strontium ruthenate." Physical Review B 108 (2023): L081105.
"Ferroelectricity and superconductivity in strained EuₓSr₁₋ₓTiO₃ films." Physical Review B 107 (2023): 094504.
"Incommensurate charge-stripe correlations in the kagome superconductor CsV₃Sb₅₋ₓSnₓ." npj Quantum Materials 8 (2023): 37.
"Decoupling of static and dynamic criticality in a driven Mott insulator." Communications Physics 5 (2022): 35.
"Similarity in the critical thicknesses for superconductivity and ferroelectricity in strained SrTiO₃ films." Applied Physics Letters 121 (2022): 012601.
"Fermi surface mapping and the nature of charge-density-wave order in the Kagome superconductor CsV₃Sb₅." Physical Review X 11 (2021): 041030.
"Fermi surface mapping and the nature of charge-density-wave order in the Kagome superconductor CsV₃Sb₅." Physical Review X 11 (2021): 041030.
"Nematic transition and nanoscale suppression of superconductivity in Fe(Te,Se)." Nature Physics 17 (2021): 903-908.
"Role of locally polar regions in the superconductivity of SrTiO₃." Physical Review Materials 5 (2021): 104801.

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