Jon Schuller

Affiliations: 
Electrical & Computer Engineering University of California, Santa Barbara, Santa Barbara, CA, United States 
Area:
Electronics & Photonics
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"Jon Schuller"

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Mark L. Brongersma grad student 2009 Stanford (Physics Tree)
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Publications

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DeCrescent RA, Kennard RM, Chabinyc ML, et al. (2021) Optical-Frequency Magnetic Polarizability in a Layered Semiconductor. Physical Review Letters. 127: 173604
DeCrescent RA, Venkatesan NR, Dahlman CJ, et al. (2020) Bright magnetic dipole radiation from two-dimensional lead-halide perovskites. Science Advances. 6: eaay4900
Chorsi HT, Yue S, Iyer PP, et al. (2020) Widely Tunable Optical and Thermal Properties of Dirac Semimetal Cd3As2 Advanced Optical Materials. 8: 1901192
DeCrescent RA, Venkatesan NR, Dahlman CJ, et al. (2019) Optical Constants and Effective-Medium Origins of Large Optical Anisotropies in Layered Hybrid Organic/Inorganic Perovskites. Acs Nano
Kalcheim Y, Butakov N, Vargas NM, et al. (2019) Robust Coupling between Structural and Electronic Transitions in a Mott Material. Physical Review Letters. 122: 057601
Lewi T, Butakov NA, Evans HA, et al. (2019) Thermally Reconfigurable Meta-Optics Ieee Photonics Journal. 11: 1-16
Lewi T, Butakov NA, Schuller JA. (2018) Thermal tuning capabilities of semiconductor metasurface resonators Nanophotonics. 8: 331-338
Iyer PP, DeCrescent RA, Lewi T, et al. (2018) Uniform Thermo-Optic Tunability of Dielectric Metalenses Physical Review Applied. 10
Butakov NA, Knight MW, Lewi T, et al. (2018) Broadband Electrically Tunable Dielectric Resonators Using Metal–Insulator Transitions Acs Photonics. 5: 4056-4060
Iyer PP, Pendharkar M, Palmstrøm CJ, et al. (2017) Ultrawide thermal free-carrier tuning of dielectric antennas coupled to epsilon-near-zero substrates. Nature Communications. 8: 472
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