摘要
该研究系统研究了压应变La2LnNi2O7薄膜(Ln为镧系元素)在常压与高压下的超导性,以揭示常压与高压超导机制之间的关系。通过59 T磁场抑制超导态,常压正常态电阻率趋于T2行为;在立方砧腔中施加高压后,Tc从常压的41–42 K提升至16 GPa时的67–73 K。然而,通过Ln替代引起的晶格压缩虽可能模拟压力效应,却使Tc降低。在上述两种情况下,Tc均与正常态输运在T2和T线性行为之间的演化相关,表明双层镍酸盐中晶格结构变化对超导性具有重要影响,为理解常压应变薄膜与高压体材料超导态的内在联系提供了线索。
材料
方法
- PLD
- ozone annealing
- X-ray diffraction
- STEM
- energy-dispersive X-ray spectroscopy
- electrical transport measurements
- Hall effect measurements
- high-magnetic-field transport up to 59T
- cubic-anvil-cell high-pressure transport
- DFT
- Wannier function construction
关键词
- ambient pressure superconductivity
- high pressure superconductivity
- compressively strained films
- t2 behaviour
- t linear behaviour
- lattice compression
- lanthanide substitution
- two step superconducting transition
亮点
- This study reports a systematic investigation of superconductivity in compressively strained bilayer nickelate films at both ambient and high pressures, bridging thin-film and bulk regimes.
- High-pressure measurements reveal Tc as high as 67-73 K at 16 GPa in La2SmNi2O7 and La2NdNi2O7 films, approaching bulk high-Tc values.
- An anomalous two-step superconducting transition emerges in films above about 8-12 GPa, which may have extrinsic origins but could also reflect multiband pairing.
- Hall coefficient sign reversal with c-axis lattice constant suggests carrier redistribution among d3z2-r2 and dx2-y2 orbitals.
结论
- In compressively strained La2LnNi2O7 films, high pressure enhances Tc from 41-42 K at ambient pressure to 67-73 K at 16 GPa, while lattice compression induced by lanthanide substitution lowers Tc.
- At ambient pressure, suppressing superconductivity with 59 T fields reveals normal-state resistivity tending toward T2 behaviour.
- In both pressure- and substitution-induced lattice changes, Tc correlates with the evolution of normal-state transport between T2 and T-linear behaviour, with smaller exponent alpha accompanying higher Tc.
- The pressure-induced two-step superconducting transition may be extrinsic in origin, possibly from spatial inhomogeneities, although intrinsic electronic-structure contributions remain possible.
- The results clarify the relationship between ambient-pressure strained-film superconductivity and high-pressure bulk superconductivity.
主要论断
- Compressively strained La2LnNi2O7 films show ambient-pressure superconductivity with onset up to 47 K.
- 证据: La2SmNi2O7 film onset Tc = 41 K and zero resistance at 6 K,Ln = Pr, Nd, Sm, Eu, Dy show onset Tc = 47 K, 42 K, 41 K, 10 K, 20K
- Hydrostatic pressure enhances Tc in the films from 41–42 K at ambient pressure to 67–73 K at 16 GPa.
- 证据: La2SmNi2O7 Tc[high] reaches 67 K at 16 GPa,La2NdNi2O7 Tc reaches 73 K at 16 GPa
- Higher Tc is associated with a smaller normal-state resistivity power-law exponent alpha, i.e. more nearly T-linear transport.
- 证据: ambient normal state at 59 T shows alpha ≈1.86,under pressure alpha approaches unity as Tc increases,higher-Tc Ln-substituted samples tend to have exponents approaching unity
- The superconductivity in La2SmNi2O7 films is quasi-two-dimensional and anisotropic.
- 证据: Hc2||ab(0 K) = 86 T and Hc2||c(0 K) = 53 T,coherence lengths xi_ab = 25 Å and xi_c = 15 Å, shorter than c-axis constant 20.5 Å,anisotropy parameter gamma_H = 1.62
- The pressure-induced two-step superconducting transition is likely extrinsic, though an intrinsic multiband origin cannot be excluded.
- 证据: Discussion proposes oxygen deficiency, La/Sm or La/Nd composition fluctuations, and non-uniform strain as plausible extrinsic origins,Direct microscopic evidence for intrinsic multiband pairing is currently unavailable
研究流程
- sample_preparation — Compressively strained, ozone-annealed La2LnNi2O7 thin films were fabricated on SrLaAlO4 substrates.
- 材料: La2LnNi2O7 films (Ln = La, Pr, Nd, Sm, Eu, Dy, Y); SrLaAlO4 (001) substrates; KrF excimer laser; ozone treatment apparatus
- 方法: pulsed-laser deposition; ex-situ ozone annealing; deposition of SrTiO3 capping layer
- 观察: La2SmNi2O7 films were the most successfully stabilized; STEM shows coherent bilayer 2222-structure with Sm preferentially on Ln(2) rock-salt sites; without ozone annealing films are insulating
- measurement — Superconducting and normal-state transport were measured as functions of lanthanide substitution, magnetic field, and hydrostatic pressure.
- 材料: La2LnNi2O7 films; Au electrodes; PPMS; non-destructive pulse magnet; cubic-anvil cell with Daphne oil 7575
- 方法: temperature-dependent resistivity; Hall effect measurement; high-magnetic-field electrical resistance up to 59T; high-pressure electrical resistivity up to 20 GPa; XRD; STEM-EDS
- 观察: ambient-pressure Tc onset: Sm41 K, Pr47 K, Nd42 K, Eu10 K, Dy20K; La2SmNi2O7 reaches zero resistance at 6K; Tc enhanced to 67 K (Sm) and 73 K (Nd) at 16 GPa; two-step resistive transitions above 8–12 GPa
- analysis — Analysis links lattice parameters, normal-state transport, and electronic structure to the superconducting transition temperature.
- 材料: resistivity data; Hall coefficient data; DFT calculations using Quantum ESPRESSO and RESPACK
- 方法: power-law fitting rho = rho0 + A T^alpha; Abrikosov-Gorkov fitting of upper critical fields; normal-state exponent analysis under pressure; density functional theory electronic structure calculations
- 观察: ambient normal-state exponent alpha ≈1.86 at 59T; under pressure alpha approaches unity as Tc increases; higher-Tc Ln samples show alpha approaching unity; Hc2||ab(0 K) = 86 T and Hc2||c(0 K) = 53T; coherence lengths: xi_ab = 25 Å and xi_c = 15 Å; DFT shows Fermi surface changes from alpha/beta sheets at ambient pressure to an additional gamma sheet under high pressure
- interpretation — Ambient-pressure strained films and high-pressure bulk-like superconductivity are linked through lattice-dependent transport, but c-axis-only compression by Ln substitution is not equivalent to hydrostatic pressure.
- 材料: ambient-pressure Ln-substitution series; high-pressure transport data; DFT-derived orbital-energy differences
- 方法: comparison of Ln-substitution chemical pressure and hydrostatic pressure effects; evaluation of possible extrinsic and intrinsic origins of two-step transitions
- 观察: Ln substitution compresses the c-axis and lowers Tc; hydrostatic pressure compresses both a and c axes and raises Tc; in both cases smaller power-law exponent alpha corresponds to higher Tc; two-step transition may arise from oxygen/La-Sm inhomogeneity or non-uniform strain, but intrinsic multiband contributions remain possible