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Solids | Free Full-Text | Thirty-Year Anniversary of  κ-(BEDT-TTF)2Cu2(CN)3: Reconciling the Spin Gap in a Spin-Liquid  Candidate
Solids | Free Full-Text | Thirty-Year Anniversary of κ-(BEDT-TTF)2Cu2(CN)3: Reconciling the Spin Gap in a Spin-Liquid Candidate

Spin Gap - an overview | ScienceDirect Topics
Spin Gap - an overview | ScienceDirect Topics

Dipolar spin-waves | NUM | Paul Scherrer Institut (PSI)
Dipolar spin-waves | NUM | Paul Scherrer Institut (PSI)

Solids | Free Full-Text | Thirty-Year Anniversary of  κ-(BEDT-TTF)2Cu2(CN)3: Reconciling the Spin Gap in a Spin-Liquid  Candidate
Solids | Free Full-Text | Thirty-Year Anniversary of κ-(BEDT-TTF)2Cu2(CN)3: Reconciling the Spin Gap in a Spin-Liquid Candidate

Spin gap, or Magnetic Interactions in Flatland – MagNonMag
Spin gap, or Magnetic Interactions in Flatland – MagNonMag

PDF] Spin gaps and spin-flip energies in density-functional theory |  Semantic Scholar
PDF] Spin gaps and spin-flip energies in density-functional theory | Semantic Scholar

Purespin Pure Spin Gap Wedge GW 52* Pure Spin Wedge Steel Mens RH |  SidelineSwap
Purespin Pure Spin Gap Wedge GW 52* Pure Spin Wedge Steel Mens RH | SidelineSwap

Spin gap, or Magnetic Interactions in Flatland – MagNonMag
Spin gap, or Magnetic Interactions in Flatland – MagNonMag

Spin Gap of the One-Dimensional t-J-J′ Model
Spin Gap of the One-Dimensional t-J-J′ Model

Research: Spin gap compounds
Research: Spin gap compounds

Structure-dependent metal–insulator transition in one-dimensional Hubbard  superlattice<xref ref-type="fn" rid="cpb143048fn1">*</xref>
Structure-dependent metal–insulator transition in one-dimensional Hubbard superlattice<xref ref-type="fn" rid="cpb143048fn1">*</xref>

BANT, SPIN, GAP, Challenger, MEDDIC and Sandler - Zoho CRM
BANT, SPIN, GAP, Challenger, MEDDIC and Sandler - Zoho CRM

A spin gap transition around 230 K observed in a new Ni(mnt)2-based  molecular solid containing 1-(4′-nitrobenzyl)isoquinolinium - ScienceDirect
A spin gap transition around 230 K observed in a new Ni(mnt)2-based molecular solid containing 1-(4′-nitrobenzyl)isoquinolinium - ScienceDirect

AF Spin Gap Limits the Coherent SC Gap in Cuprates
AF Spin Gap Limits the Coherent SC Gap in Cuprates

B-GK results for the size extrapolation of spin-gap data. The result of...  | Download Scientific Diagram
B-GK results for the size extrapolation of spin-gap data. The result of... | Download Scientific Diagram

Spin gap, or Magnetic Interactions in Flatland – MagNonMag
Spin gap, or Magnetic Interactions in Flatland – MagNonMag

The spin gap is depicted in a spin chain. | Download Scientific Diagram
The spin gap is depicted in a spin chain. | Download Scientific Diagram

Solids | Free Full-Text | Thirty-Year Anniversary of  &kappa;-(BEDT-TTF)2Cu2(CN)3: Reconciling the Spin Gap in a Spin-Liquid  Candidate
Solids | Free Full-Text | Thirty-Year Anniversary of &kappa;-(BEDT-TTF)2Cu2(CN)3: Reconciling the Spin Gap in a Spin-Liquid Candidate

1 2 M ar 2 01 4 Spin Gap in the Single Spin-1 / 2 Chain Cuprate | Semantic  Scholar
1 2 M ar 2 01 4 Spin Gap in the Single Spin-1 / 2 Chain Cuprate | Semantic Scholar

On the Quantum Spin Hall Gap of Monolayer 1T′‐WTe2 - Zheng - 2016 -  Advanced Materials - Wiley Online Library
On the Quantum Spin Hall Gap of Monolayer 1T′‐WTe2 - Zheng - 2016 - Advanced Materials - Wiley Online Library

The spin gap is depicted in a spin chain. | Download Scientific Diagram
The spin gap is depicted in a spin chain. | Download Scientific Diagram

y dx^A{\;f6{x))'^ -\- Cp{xY — Dcos29{x)
y dx^A{\;f6{x))'^ -\- Cp{xY — Dcos29{x)

Spin Gap in β-TeVO4: a Quantum Monte Carlo Study | SpringerLink
Spin Gap in β-TeVO4: a Quantum Monte Carlo Study | SpringerLink

Spin gap behavior in the two-leg spin-ladder BiCu2PO6 B ...
Spin gap behavior in the two-leg spin-ladder BiCu2PO6 B ...

Spin gap ∆ (2,0) s (physically corresponding to the Haldane gap in the... |  Download Scientific Diagram
Spin gap ∆ (2,0) s (physically corresponding to the Haldane gap in the... | Download Scientific Diagram

Robust Tunable Large-Gap Quantum Spin Hall States in Monolayer Cu2S on  Insulating Substrates | ACS Omega
Robust Tunable Large-Gap Quantum Spin Hall States in Monolayer Cu2S on Insulating Substrates | ACS Omega

Spin gap, or Magnetic Interactions in Flatland – MagNonMag
Spin gap, or Magnetic Interactions in Flatland – MagNonMag