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1. [N I] 10400/10410 {\AA} Lines as Possible Disk Wind Tracers in a Young Intermediate-Mass Star

2. WARP: The Data Reduction Pipeline for the WINERED spectrograph

3. Shock Excitation in Narrow Line Regions Powered by AGN Outflows

4. Survey of near-infrared diffuse interstellar bands in $Y$ and $J$ bands. I. Newly identified bands

5. Effective temperatures of red supergiants estimated from line-depth ratios of iron lines in the YJ bands, 0.97--1.32 micron

6. Mg II and Fe II fluxes of luminous quasars at z ~ 2.7 and evaluation of the Baldwin effect in the flux-to-abundance conversion method for quasars

7. The effect of surface gravity on line-depth ratios in the wavelength range 0.97-1.32 {\mu}m

8. Identification of Absorption Lines of Heavy Metals in the Wavelength Range 0.97--1.32 Micron

9. Possible progression of mass flow processes around young intermediate-mass stars based on high-resolution near-infrared spectroscopy. I. Taurus

10. First detection of $A$--$X$ (0,0) bands of interstellar C$_2$ and CN

11. FeI lines in 0.91-1.33 ${\rm \mu}$m spectra of red giants for measuring the microturbulence and metallicities

12. Highly Sensitive, Non-cryogenic NIR High-resolution Spectrograph, WINERED

13. The metallicity effect on line-depth ratios in APOGEE $H$-band spectra

14. A newly-identified emission-line region around P Cygni

15. Correction of near-infrared high-resolution spectra for telluric absorption at 0.90-1.35 microns

16. Method to Estimate the Effective Temperatures of Late-Type Giants using Line-Depth Ratios in the Wavelength Range 0.97-1.32$\mu $m

17. New classical Cepheids in the inner part of the northern Galactic disk and their kinematics

18. Near infrared diffuse interstellar bands toward the Cygnus OB2 association

19. A Warm Near-Infrared High-Resolution Spectrograph with Very High Throughput (WINERED)

20. Near-infrared diffuse interstellar bands in 0.91-1.32 micron

21. Shock Excitation in Narrow-line Regions Powered by AGN Outflows

23. 遠隔講義と対面講義が学業成績GPAに与える影響:通信ビッグデータを用いた分析

26. Survey of Near-infrared Diffuse Interstellar Bands in Y and J Bands. I. Newly Identified Bands

27. Absorption Lines in the 0.91–1.33 μm Spectra of Red Giants for Measuring Abundances of Mg, Si, Ca, Ti, Cr, and Ni

28. Mg ii and Fe ii Fluxes of Luminous Quasars at z ∼ 2.7 and the Evaluation of the Baldwin Effect in the Flux-to-abundance Conversion Method for Quasars

30. Effective temperatures of red supergiants estimated from line-depth ratios of iron lines in the YJ bands, 0.97-1.32μm

32. The effect of surface gravity on line-depth ratios in the wavelength range 0.97-1.32 ��m

33. Identification of Absorption Lines of Heavy Metals in the Wavelength Range 0.97–1.32 μm

34. Possible Progression of Mass-flow Processes around Young Intermediate-mass Stars Based on High-resolution Near-infrared Spectroscopy. I. Taurus

35. First Detection of A–X (0,0) Bands of Interstellar C2 and CN

36. Fe i Lines in 0.91–1.33 μm Spectra of Red Giants for Measuring the Microturbulence and Metallicities

38. Effective temperatures of red supergiants estimated from line-depth ratios of iron lines in the YJ bands, 0.97-1.32μm.

39. A Survey of Near-infrared Diffuse Interstellar Bands

40. Correction of near-infrared high-resolution spectra for telluric absorption at 0.90-1.35 microns

41. WINERED High-resolution Near-infrared Line Catalog: A-type Star

42. Optical and Near-infrared High-resolution Spectroscopic Observations of Nova V2659 Cyg: Structure of Nova Ejecta and Origin of Two-distinct Velocity Systems

43. A newly identified emission-line region around P Cygni

44. Very high-sensitive NIR high-resolution spectrograph WINERED: on-going observations at NTT

45. Correction of Near-infrared High-resolution Spectra for Telluric Absorption at 0.90-1.35 mu m

46. Method to Estimate the Effective Temperatures of Late-Type Giants using Line-Depth Ratios in the Wavelength Range 0.97-1.32$��$m

47. NEAR INFRARED DIFFUSE INTERSTELLAR BANDS TOWARD THE CYGNUS OB2 ASSOCIATION

48. A Survey of Near-infrared Diffuse Interstellar Bands

50. Near-infrared Spectroscopic Observations of Comet C/2013 R1 (Lovejoy) by WINERED: CN Red-system Band Emission

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