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Closing of the Induced Gap in a Hybrid Superconductor-Semiconductor Nanowire.
D. Puglia, E. A. Martinez, G. C. Ménard, A. Pöschl, S. Gronin, G. C. Gardner, R. Kallaher, M. J. Manfra, C. M. Marcus, A. P. Higginbotham,* L. Casparis.*
*equal contribution

Conductance-matrix symmetries of a three-terminal hybrid device.
G.C. Menard, G.L.R. Anselmetti, E.A. Martinez, D. Puglia, F.K. Malinowski, J.S. Lee, S. Choi, M. Pendharkar, C.J. Palmstrøm, K. Flensberg, C.M. Marcus, L. Casparis,* A. P. Higginbotham.*
*equal contribution
Phys. Rev. Lett. 124, 036802 (2020). arXiv:1905.05505

Nonlocal conductance spectroscopy of Andreev bound states: Symmetry relations and BCS charges.
J. Danon, A.B. Hellenes, E.B. Hansen, L. Casparis, A.P. Higginbotham, K. Flensberg.
Phys. Rev. Lett. 124, 036801 (2020). arXiv:1905.05438


End-to-end correlated subgap states in hybrid nanowires.
G.L.R. Anselmetti, E.A. Martinez, G.C. Ménard, D.Puglia, F.K. Malinowski, J.S. Lee, S. Choi, M. Pendharkar, C.J. Palmstrøm, C.M. Marcus, L. Casparis,* A.P. Higginbotham.*
*equal contribution
Phys. Rev. B 100, 205412 (2019). arXiv:1908.05549


Harnessing electro-optic correlations in an efficient mechanical converter.
A.P. Higginbotham,* P.S. Burns,* M.D. Urmey,* R.W. Peterson, N.S. Kampel, B.M. Brubaker, G.C. Smith, K.W. Lehnert, C.A. Regal. *equal contribution
Nature Physics 14, 1038-1042 (2018). arXiv:1712.06535

Topological phase transition measured in a dissipative metamaterial.
E.I. Rosenthal, N.K. Ehrlich, M.S. Rudner, A.P. Higginbotham, K.W. Lehnert.
Phys. Rev. B 97, 220301(R) (2018). arXiv:1802.02243


Breaking Lorentz reciprocity with frequency conversion and delay.
E.I. Rosenthal, B.J. Chapman, A.P. Higginbotham, J. Kerckhoff, K.W. Lehnert.
Phys. Rev. Lett. 119, 147703 (2017). arXiv.:1705.09548

Reconfigurable re-entrant cavity for wireless coupling to an electrooptomechanical device.
T. Menke, P.S. Burns, A.P. Higginbotham, N.S. Kampel, R.W. Peterson, K. Cicak, R.W. Simmonds, C.A. Regal, K.W. Lehnert
Review of Scientific Instruments 88, 094701 (2017). arXiv:1703.06470

Transport signatures of quasiparticle poisoning in a Majorana island.
S.M. Albrecht, E.B. Hansen, A.P. Higginbotham, F. Kuemmeth, T.S. Jespersen, J. Nygård, P. Krogstrup, J. Danon, K. Flensberg, C.M. Marcus.
Phys. Rev. Lett. 118, 137701 (2017). arXiv:1612.05748


Relating the Structure of Geminal Amido Esters to Their Molecular Hyperpolarizability.
J.M. Cole, T.-C. Lin, C.M. Ashcroft, J. Perez-Moreno, Y. Tan, P. Venkatesan, A.P. Higginbotham, P. Pattison, A.J. Edwards, R.O. Piltz, K. Clays, A. Ilangovan.
J. Phys. Chem. C 120, 29439–29448 (2016).

Milestones toward Majorana-based quantum computing.
D. Aasen,* M. Hell,* R.V. Mishmash,* A.P. Higginbotham,* J. Danon, M. Leijnse, T.S. Jespersen, J.A. Folk, C.M. Marcus, K. Flensberg, and J. Alicea. *equal contribution
Phys. Rev. X 6, 031016 (2016). arXiv:1511.05153

Approaching a topological phase transition in Majorana nanowires.
R.V. Mishmash, D. Aasen, A.P. Higginbotham, and J. Alicea.
Phys. Rev. B 93, 245404 (2016). arXiv:1601.07908

Exponential protection of zero modes in Majorana islands.
S.M. Albrecht,* A.P. Higginbotham,* M. Madsen, F. Kuemmeth, T. S. Jespersen, J. Nygård, P. Krogstrup, C.M. Marcus. *equal contribution
Nature 531, 206–209 (2016). arXiv:1603.03217


Parity lifetime of bound states in a proximitized semiconductor nanowire.
A.P. Higginbotham,* S.M. Albrecht,* G. Kiršanskas, W. Chang, F. Kuemmeth, P. Krogstrup, T.S. Jespersen, J. Nygård, K. Flensberg, C.M. Marcus. *equal contribution
Nature Physics 11, 1017–1021 (2015). arXiv:1501.05155


Hole Spin Coherence in a Ge/Si Heterostructure Nanowire.
A.P. Higginbotham, T.W. Larsen, J. Yao, H. Yan, C.M. Lieber, C.M. Marcus.
Nano Lett. 14, 3582 (2014). arXiv:1403.2093

Antilocalization of Coulomb Blockade in a Ge/Si Nanowire.
A.P. Higginbotham, F. Kuemmeth, T.W. Larsen, M. Fitzpatrick, J. Yao, H. Yan, C.M. Lieber, C.M. Marcus.
Phys. Rev. Lett. 112, 216806 (2014). arXiv:1401.2948

Coherent Operations and Screening in Multielectron Spin Qubits.
A. P. Higginbotham, F. Kuemmeth, M. P. Hanson, A. C. Gossard, C. M. Marcus.
Phys. Rev. Lett. 112, 026801 (2014). arXiv:1306.2720


Molecular Origins of the High-Performance Nonlinear Optical Susceptibility in a Phenolic Polyene Chromophore.
T-C. Lin, J. M. Cole, A.P. Higginbotham, A.J. Edwards, R.O. Piltz, J. Pérez-Moreno, J-Y. Seo, SC. Lee, K. Clays, O-P. Kwon.
J. Phys. Chem. C. 117, 9416 (2013).


Identifying and evaluating organic nonlinear optical materials via molecular moments.
A.P. Higginbotham, J.M. Cole, M.A. Blood-Forsythe, D.D. Hickstein.
J. Appl. Phys. 111, 033512 (2012).


Evidence of the harmonic Faraday instability in ultrasonic atomization experiments with a deep, inviscid fluid.
A.P. Higginbotham, A. Guillen, N. Jones, T.D. Donnelly, A.J. Bernoff.
J. Acoust. Soc. Am. 130, 2694 (2011).


Generation of nanoparticles of controlled size using ultrasonic piezoelectric oscillators in solution.
I.K. Wright, A.P. Higginbotham, S.M. Baker, T.D. Donnelly.
ACS Appl. Mater. Interfaces 2, 2360 (2010).


Generation of Mie size microdroplet aerosols with applications in laser-driven fusion experiments. 
A.P. Higginbotham, O. Semonin, S. Bruce, C. Chan, M. Maindi, T.D. Donnelly, M. Maurer, W. Bang, I. Churina, J. Osterholz, I. Kim, A.C. Bernstein, T. Ditmire.
Rev. Sci. Inst. 80, 063503 (2009).^