Spatially modulated "Mottness" in La2-xBaxCuO4
P. Abbamonte, A. Rusydi, S. Smadici, G. D. Gu, G. A. Sawatzky, and D., L. Feng

TL;DR
This paper investigates charge order and Mottness modulation in La2-xBaxCuO4 using resonant soft x-ray scattering, revealing significant hole density modulation consistent with stripe phases in cuprate superconductors.
Contribution
It provides direct evidence of charge density modulation and Mottness variation in La2-xBaxCuO4, advancing understanding of stripe phases in high-temperature superconductors.
Findings
Detected giant resonances indicating hole density modulation.
Estimated stripe hole content of approximately 0.59 holes.
Confirmed modulation amplitude consistent with half-filled stripes.
Abstract
Stripe phases were predicted to arise in doped antiferromagnets through competition between magnetism and the kinetic energy of mobile carriers (typically holes). In copper-oxides the main experimental evidence for stripes is neutron scattering from La1.48Nd0.4Sr0.12CuO4 (LNSCO) and La1.875Ba0.125CuO4 (LBCO) which reveals coexisting static spin and charge order whose wavelengths differ by a factor of two, reminiscent of charged rivers separating regions of oppositely-phased antiferromagnetism. A neutron is an electrically neutral object, however, so does not detect charge but rather its associated lattice distortion ; it is not known if the "stripe" phase in LNSCO and LBCO actually involves ordering of the doped holes. Here we present a study of the charge order in LBCO with resonant soft x-ray scattering (RSXS). We observe giant resonances at both the mobile carrier and upper-Hubbard…
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