Reviews & Analysis

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  • An in-plane magnetic field usually destroys the isotropic fractional quantum Hall states of two-dimensional electron systems, and gives rise to anisotropic liquid-crystal-like states. An unexpected observation of the coexistence of both states at once suggests the emergence of a new quantum phase of matter.

    • Chetan Nayak
    News & Views
  • Heavy electrons, formed through the quantum mixture of localized and itinerant electrons, can pair to create unconventional superconductivity in a two-dimensional lattice that is just one-unit-cell thick.

    • J. D. Thompson
    News & Views
  • For an important class of liquids, relaxation dynamics are constrained by a surprisingly simple scaling relationship between density and temperature. It seems that thermodynamics holds the key to pinning down the exponent.

    • C. Austen Angell
    • Iolanda Santana Klein
    News & Views
  • A demonstration of the ability to produce arbitrary-shaped electron bunches from an ultracold gas represents an important step towards studying ultrafast molecular processes in laboratories around the world.

    • Edgar Vredenbregt
    • Jom Luiten
    News & Views
  • Quantum states of light could be a better probe for materials than classical states, but they are hard to generate in the laboratory. A scheme that combines large amounts of data with sophisticated theoretical analysis gets around this limitation.

    • Carlo Piermarocchi
    News & Views
  • Generating intense bursts of high-energy radiation usually requires the construction of large and expensive facilities, such as free-electron lasers, which are based on conventional particle accelerators. Laser-driven accelerators offer a cheaper and smaller alternative, and they are now capable of generating intense bursts of gamma-rays.

    • Gennady Shvets
    News & Views
  • Electrons at an interface between two insulating oxides are now shown to exhibit ferromagnetism — a collective electronic state not seen in the bulk of either individual oxide.

    • Andrew J. Millis
    News & Views
  • A comprehensive map of the spin fluctuations in high-temperature superconductors is emerging through the application of a novel experimental technique — and the surprising results are challenging theorists.

    • Matthias Vojta
    News & Views
  • Surfaces inherently lack inversion symmetry. This property is now shown to promote the spontaneous formation of a lattice of spin vortices in a thin magnetic film, a finding that suggests a simple route towards new spintronics applications.

    • Christian Pfleiderer
    News & Views
  • A strictly one-dimensional electron liquid or 'Luttinger liquid' may seem a purely theoretical construct. But measurements of the electronic structure of strings of gold atoms self-aligned on a germanium surface suggest this mythic state of matter is real, offering new possibilities to investigate and ultimately control its properties and behaviour.

    • Hanno Weitering
    News & Views
  • In a Mott insulator, repulsive interactions suppress conductivity. Such behaviour has been demonstrated, individually, for both bosonic and fermionic atoms in optical lattices. Now, a Bose–Fermi mixture is found to be Mott insulating too, even when the individual components are not.

    • Kai Dieckmann
    News & Views
  • The linear and hyperbolic electronic bands of single- and bilayer graphene give rise to quantum Hall effects that are different from those seen in previously studied 2D systems. The electronic structure of trilayer graphene includes both types of band, giving rise to even richer behaviour.

    • Marcus Freitag
    News & Views
  • Equilibrium free-energy landscapes supply important information about complex molecules such as nucleic acids and proteins. But can equilibrium landscapes be calculated from measurements on a non-equilibrium system?

    • Christopher Jarzynski
    News & Views
  • A single microwave photon in a superposition of two states of different frequency is now demonstrated using a superconducting quantum interference device to mediate the coupling between two harmonics of a resonator. Such quantum circuits bring closer the possibility of controlling photon–photon interactions at the single-photon level.

    • P.-M. Billangeon
    • Y. Nakamura
    News & Views